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From: <Saved by Microsoft Internet Explorer 5>
Subject: Sphinx-4 - A speech recognizer written entirely in the Java(TM) programming language
Date: Wed, 29 Sep 2004 15:14:57 +0300
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<H1><I>Sphinx-4</I><BR><FONT size=3D+1>A speech recognizer written =
entirely=20
in the Java<SUP><FONT size=3D-1>TM</FONT></SUP> programming=20
language</FONT></H1></TD></TR></TBODY></TABLE></CENTER><FONT =
face=3DArial size=3D2>
<TABLE width=3D"100%" border=3D0>
<TBODY>
<TR>
<TD vAlign=3Dtop width=3D"20%" bgColor=3D#f0f8ff><BR><B><FONT =
size=3D+0>Sphinx-4=20
Links</FONT></B>=20
<P><FONT size=3D-1>SourceForge=20
<LI><A href=3D"http://sourceforge.net/projects/cmusphinx">Project =
Page</A>=20
<LI><A =
href=3D"https://sourceforge.net/forum/?group_id=3D1904">Forums</A>=20
<LI><A=20
=
href=3D"http://sourceforge.net/project/showfiles.php?group_id=3D1904&=
package_id=3D117949">Download</A>=20
<LI><A href=3D"http://sourceforge.net/cvs/?group_id=3D1904">CVS =
Repository</A>=20
<P><A href=3D"http://cmusphinx.org/">CMU Sphinx</A> </P>
<P><A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/javadoc/index.html">Sphi=
nx-4=20
Javadocs</A> </P>
<P><A=20
=
href=3D"http://www.speech.cs.cmu.edu/cgi-bin/cmusphinx/twiki/view/Sphinx4=
/WebHome">Sphinx-4=20
TWiki</A> </P>
<HR>
<B>ZipCity</B> - A demonstration of Sphinx-4 using Java Web Start=20
technology. <A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/demo/sphinx/zipcity/READ=
ME.html">Read=20
more</A> about the ZipCity demo, or <A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/zipcity/zipcity.jnlp">Tr=
y=20
it </A>.=20
<P><A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/zipcity/zipcity.jnlp"><I=
MG=20
=
src=3D"http://cmusphinx.sourceforge.net/sphinx4/doc-files/zipcity.gif"></=
A>=20
<HR>
<CENTER><A href=3D"http://www.sourceforge.net/"><IMG height=3D31=20
alt=3D"SourceForge Logo"=20
=
src=3D"http://sourceforge.net/sflogo.php?group_id=3D1904&type=3D1" =
width=3D88=20
border=3D0></A> <BR>Hosted by =
SourceForge.net</CENTER></FONT></B></LI></TD>
<TD width=3D"5%"><BR></TD>
<TD vAlign=3Dtop><BR>
<H3>General Information</H3>
<UL>
<LI><A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/#what_is_sphinx4">Introd=
uction</A>=20
<LI><A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/#capabilities">Capabilit=
ies</A>=20
<LI><A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/#speed_and_accuracy">Per=
formance</A>=20
</LI></UL>
<H3>Installation</H3>
<UL>
<LI><A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/#download_and_install">R=
equired=20
Software</A>=20
<LI><A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/#source">Downloading=20
Sphinx-4</A>=20
<LI><A =
href=3D"http://cmusphinx.sourceforge.net/sphinx4/#demos">Running=20
the demonstration programs</A> </LI></UL>
<H3>Building</H3>
<UL>
<LI><A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/#how_build">Building=20
Sphinx-4</A>=20
<LI><A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/#create_javadocs">Creati=
ng=20
Javadocs</A>=20
<LI><A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/#troubleshooting">Troubl=
eshooting</A>=20
</LI></UL>
<H3>Sphinx-4 in Detail</H3>
<UL>
<LI><A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/#whitepaper">Sphinx-4=20
Whitepaper</A>=20
<LI><A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/doc/Sphinx4-faq.html">Fr=
equently=20
asked questions about Sphinx-4 (with answers) </A>
<LI><A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/#sphinx_properties">Unde=
rstanding=20
Sphinx-4 Configuration Management</A>=20
<LI><A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/#sphinx_instrumentation"=
>Understanding=20
Sphinx-4 Instrumentation </A>
<LI><A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/javadoc/edu/cmu/sphinx/f=
rontend/doc-files/FrontEndFAQ.html">Front=20
End</A>=20
<UL>
<LI><A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/javadoc/edu/cmu/sphinx/f=
rontend/doc-files/FrontEndConfiguration.html">Configuration</A>=20
<LI><A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/javadoc/edu/cmu/sphinx/f=
rontend/doc-files/FrontEndFAQ.html#create_cepstra">Creating=20
spectrum/cepstrum</A>=20
<LI><A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/javadoc/edu/cmu/sphinx/f=
rontend/doc-files/FrontEndFAQ.html#decode_cepstra">Decoding=20
cepstra</A>=20
<LI><A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/javadoc/edu/cmu/sphinx/f=
rontend/doc-files/FrontEndFAQ.html#enable_endpointer">Enabling=20
the endpointer</A> </LI></UL>
<LI><A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/#batch_tests">Running =
the=20
Regression Tests</A>=20
<LI><A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/#setup_test">Setting up =
a=20
Regression Test</A>=20
<UL>
<LI><A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/#batch_files">Batch=20
Files</A>=20
<LI><A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/#input_files">Input=20
Audio/Cepstral Files</A>=20
<LI><A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/#an4_walkthrough">Exampl=
e:=20
Setting up AN4 tests</A> </LI></UL>
<LI><A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/#acoustic_models">Acoust=
ic=20
Model Package</A>=20
<LI><A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/#language_models">Creati=
ng=20
Language Models</A>=20
<LI><A =
href=3D"http://cmusphinx.sourceforge.net/sphinx4/#bnf_grammars">BNF=20
Style Grammars</A>=20
<LI><A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/#architecture_and_api1">=
Architecture=20
and API</A>=20
<LI><A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/doc/ProgrammersGuide.htm=
l">Programmer's=20
Guide</A> </LI></UL>
<H3>Versions</H3>
<UL>
<LI><A =
href=3D"http://cmusphinx.sourceforge.net/sphinx4/index.html">Most=20
current version</A> (<A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/RELEASE_NOTES">release=20
notes</A>)=20
<LI><A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/sphinx4-1.0beta">Sphinx-=
4=20
1.0 beta</A> (<A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/sphinx4-1.0beta/RELEASE_=
NOTES">release=20
notes</A>)=20
<LI><A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/sphinx4-0.1alpha">Sphinx=
-4=20
0.1 alpha</A> </LI></UL>
<P><BR><FONT size=3D-1><B>NOTE</B>: This page contains links to =
javadocs. If=20
the links are broken, you should either follow instructions in <A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/#create_javadocs">Creati=
ng=20
Javadocs</A>, or view this page online at <A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/">http://cmusphinx.sourc=
eforge.net/sphinx4/</A>.=20
</FONT>
<P></P></TD></TR></TBODY></TABLE>
<HR>
<H2>General Information about Sphinx-4</H2>
<UL>
<LI><A name=3Dwhat_is_sphinx4><B>Introduction</B></A>=20
<P>Sphinx-4 is a state-of-the-art speech recognition system written =
entirely=20
in the Java<SUP><FONT size=3D-1>TM</FONT></SUP> programming language. =
It was=20
created via a joint collaboration between the Sphinx group at Carnegie =
Mellon=20
University, Sun Microsystems Laboratories, Mitsubishi Electric =
Research Labs=20
(MERL), and Hewlett Packard (HP), with contributions from the =
University of=20
California at Santa Cruz (UCSC) and the Massachusetts Institute of =
Technology=20
(MIT).=20
<P>Sphinx-4 started out as a port of Sphinx-3 to the Java programming=20
language, but evolved into a recognizer designed to be much more =
flexible than=20
Sphinx-3, thus becoming an excellent platform for speech research. =
<BR> =20
</P>
<LI><A name=3Dcapabilities><B>Capabilities</B></A>=20
<P>Live mode and batch mode speech recognizers, capable of recognizing =
discrete and continuous speech.=20
<P>Generalized pluggable <A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/javadoc/edu/cmu/sphinx/f=
rontend/package-summary.html"><B>front=20
end</B></A> architecture. Includes pluggable implementations of <A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/javadoc/edu/cmu/sphinx/f=
rontend/filter/Preemphasizer.html">preemphasis</A>,=20
<A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/javadoc/edu/cmu/sphinx/f=
rontend/window/RaisedCosineWindower.html">Hamming=20
window</A>, <A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/javadoc/edu/cmu/sphinx/f=
rontend/transform/DiscreteFourierTransform.html">FFT</A>,=20
<A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/javadoc/edu/cmu/sphinx/f=
rontend/frequencywarp/MelFrequencyFilterBank.html">Mel=20
frequency filter bank</A>, <A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/javadoc/edu/cmu/sphinx/f=
rontend/transform/DiscreteCosineTransform.html">discrete=20
cosine transform</A>, <A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/javadoc/edu/cmu/sphinx/f=
rontend/feature/BatchCMN.html">cepstral=20
mean normalization</A>, and <A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/javadoc/edu/cmu/sphinx/f=
rontend/feature/DeltasFeatureExtractor.html">feature=20
extraction</A> of cepstra, delta cepstra, double delta cepstra =
features.=20
<P>Generalized pluggable <B>language model</B> architecture. Includes=20
pluggable language model support for <A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/javadoc/edu/cmu/sphinx/l=
inguist/language/ngram/SimpleNGramModel.html">ASCII</A>=20
and <A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/javadoc/edu/cmu/sphinx/l=
inguist/language/ngram/large/LargeTrigramModel.html">binary</A>=20
versions of unigram, bigram, trigram, <A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/javadoc/edu/cmu/sphinx/j=
sapi/JSGFGrammar.html">Java=20
Speech API Grammar Format (JSGF)</A>, and <A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/javadoc/edu/cmu/sphinx/l=
inguist/language/grammar/FSTGrammar.html">ARPA-format=20
FST grammars</A>.=20
<P>Generalized <A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/javadoc/edu/cmu/sphinx/l=
inguist/acoustic/package-summary.html"><B>acoustic=20
model</B></A> architecture. Includes pluggable support for <A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/javadoc/edu/cmu/sphinx/l=
inguist/acoustic/tiedstate/Sphinx3Loader.html">Sphinx-3=20
acoustic models</A>.=20
<P>Generalized <A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/javadoc/edu/cmu/sphinx/d=
ecoder/search/package-summary.html"><B>search=20
management</B></A>. Includes pluggable support for <A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/javadoc/edu/cmu/sphinx/d=
ecoder/search/SimpleBreadthFirstSearchManager.html">breadth=20
first</A> and <A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/javadoc/edu/cmu/sphinx/d=
ecoder/search/WordPruningBreadthFirstSearchManager.html">word=20
pruning</A> searches.=20
<P>Utilities for post-processing recognition results, including <A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/javadoc/edu/cmu/sphinx/r=
esult/ConfidenceScorer.html">obtaining=20
confidence scores</A>, <A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/javadoc/edu/cmu/sphinx/r=
esult/Lattice.html">generating=20
lattices</A> and <A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/javadoc/edu/cmu/sphinx/t=
ools/tags/package-summary.html">embedding=20
ECMAScript into JSGF tags</A>.=20
<P>Standalone tools. Includes tools for <A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/javadoc/edu/cmu/sphinx/t=
ools/audio/package-summary.html">displaying=20
waveforms and spectrograms</A> and <A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/javadoc/edu/cmu/sphinx/t=
ools/feature/package-summary.html">generating=20
features from audio</A>.=20
<P>(<B>NOTE:</B> The links in this section point to local files =
created by=20
javadoc. If they are broken, please follow the instructions on <A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/#create_javadocs">Creati=
ng=20
Javadocs</A> to create these links.) <BR> </P>
<LI><A name=3Dspeed_and_accuracy><B>Performance</B></A>=20
<P>Sphinx-4 is a very flexible system capable of performing many =
different=20
types of recognition tasks. As such, it is difficult to characterize =
the=20
performance and accuracy of Sphinx-4 with just a few simple numbers =
such as=20
speed and accuracy. Instead, we regularly run regression tests on =
Sphinx-4 to=20
determine how it performs under a variety of tasks. These tasks and =
their=20
latest results are as follows (each task is progressively more =
difficult than=20
the previous task):=20
<UL>
<LI><A=20
=
href=3D"http://cmusphinx.sourceforge.net/IsolatedDigitsResults.html">Isol=
ated=20
Digits (TI46)</A>: Runs Sphinx-4 with pre-recorded test data to =
gather=20
performance metrics for recognizing just one word at a time. The =
vocabulary=20
is merely the spoken digits from 0 through 9, with a single =
utterance=20
containing just one digit. <BR><I>(TI46 refers to the "NIST CD-ROM =
Version=20
of the Texas Instruments-developed 46-Word Speaker-Dependent =
Isolated Word=20
Speech Database".)</I> <BR>
<LI><A=20
=
href=3D"http://cmusphinx.sourceforge.net/ConnectedDigitsResults.html">Con=
nected=20
Digits (TIDIGITS)</A>: Extends the Isolated Digits test to recognize =
more=20
than one word at a time (i.e., continuous speech). The vocabulary is =
merely=20
the spoken digits from 0 through 9, with a single utterance =
containing a=20
sequence of digits. <BR><I>(TIDIGITS refers to the "NIST CD-ROM =
Version of=20
the Texas Instruments-developed Studio Quality Speaker-Independent=20
Connected-Digit Corpus".)</I> <BR>
<LI><A =
href=3D"http://cmusphinx.sourceforge.net/SmallVocabResults.html">Small=20
Vocabulary (AN4)</A>: Extends the vocabulary to approximately 100 =
words,=20
with input data ranging from speaking words as well as spelling =
words out=20
letter by letter. <BR>
<LI><A=20
=
href=3D"http://cmusphinx.sourceforge.net/MediumVocabResults.html">Medium =
Vocabulary (RM1)</A>: Extends the vocabulary to approximately 1,000 =
words.=20
<BR>
<LI><A=20
=
href=3D"http://cmusphinx.sourceforge.net/MediumVocabResults.html">Medium =
Vocabulary (WSJ5K)</A>: Extends the vocabulary to approximately =
5,000 words.=20
<BR>
<LI><A =
href=3D"http://cmusphinx.sourceforge.net/LargeVocabResults.html">Medium=20
Vocabulary (WSJ20K)</A>: Extends the vocabulary to approximately =
20,000=20
words. <BR>
<LI><A =
href=3D"http://cmusphinx.sourceforge.net/LargeVocabResults.html">Large=20
Vocabulary (HUB4)</A>: Extends the vocabulary to approximately =
64,000 words.=20
</LI></UL>
<P>The following table compares the performance of Sphinx 3.3 with =
Sphinx-4.=20
<P>
<TABLE cellSpacing=3D0 cellPadding=3D1 border=3D1>
<TBODY>
<TR>
<TH bgColor=3D#e0e8ff><STRONG>Test</STRONG> </TH>
<TH bgColor=3D#e0e8ff><STRONG>S3.3 WER</STRONG> </TH>
<TH bgColor=3D#e0e8ff><STRONG>S4 WER</STRONG> </TH>
<TH bgColor=3D#e0e8ff><STRONG>S3.3 RT</STRONG> </TH>
<TH bgColor=3D#e0e8ff><STRONG>S4 RT(1)</STRONG> </TH>
<TH bgColor=3D#e0e8ff><STRONG>S4 RT (2)</STRONG> </TH>
<TH bgColor=3D#e0e8ff><STRONG>Vocabulary Size</STRONG> </TH>
<TH bgColor=3D#e0e8ff><STRONG>Language Model</STRONG> </TH></TR>
<TR>
<TH bgColor=3D#f0f8ff><STRONG>TI46</STRONG> </TH>
<TD align=3Dright>1.217 </TD>
<TD align=3Dright>0.168 </TD>
<TD align=3Dright>0.14 </TD>
<TD align=3Dright>.03 </TD>
<TD align=3Dright>.02 </TD>
<TD align=3Dright>11 </TD>
<TD>isolated digits recognition </TD></TR>
<TR>
<TH bgColor=3D#f0f8ff><STRONG>TIDIGITS</STRONG> </TH>
<TD align=3Dright>0.661 </TD>
<TD align=3Dright>0.549 </TD>
<TD align=3Dright>0.16 </TD>
<TD align=3Dright>0.07 </TD>
<TD align=3Dright>0.05 </TD>
<TD align=3Dright>11 </TD>
<TD>continuous digits </TD></TR>
<TR>
<TH bgColor=3D#f0f8ff><STRONG>AN4</STRONG> </TH>
<TD align=3Dright>1.300 </TD>
<TD align=3Dright>1.192 </TD>
<TD align=3Dright>0.38 </TD>
<TD align=3Dright>0.25 </TD>
<TD align=3Dright>0.20 </TD>
<TD align=3Dright>79 </TD>
<TD>trigram </TD></TR>
<TR>
<TH bgColor=3D#f0f8ff><STRONG>RM1</STRONG> </TH>
<TD align=3Dright>2.746 </TD>
<TD align=3Dright>2.88 </TD>
<TD align=3Dright>0.50 </TD>
<TD align=3Dright>0.50 </TD>
<TD align=3Dright>0.41 </TD>
<TD align=3Dright>1,000 </TD>
<TD>trigram </TD></TR>
<TR>
<TH bgColor=3D#f0f8ff><STRONG>WSJ5K</STRONG> </TH>
<TD align=3Dright>7.323 </TD>
<TD align=3Dright>6.97 </TD>
<TD align=3Dright>1.36 </TD>
<TD align=3Dright>1.22 </TD>
<TD align=3Dright>0.96 </TD>
<TD align=3Dright>5,000 </TD>
<TD>trigram </TD></TR>
<TR>
<TH bgColor=3D#f0f8ff><STRONG>HUB4</STRONG> </TH>
<TD align=3Dright>18.845 </TD>
<TD align=3Dright>18.756 </TD>
<TD align=3Dright>3.06 </TD>
<TD align=3Dright>~4.4 </TD>
<TD align=3Dright>3.95 </TD>
<TD align=3Dright>60,000 </TD>
<TD>trigram </TD></TR></TBODY></TABLE>
<P>Note that performance work on the HUB4 test is not complete=20
<P>
<P>Key:=20
<UL>
<LI><STRONG>WER</STRONG> - Word error rate (%) (lower is better)=20
<LI><STRONG>RT</STRONG> - Real Time - Ratio of processing time to =
audio time=20
- (lower is better)=20
<LI><STRONG>S3.3 RT</STRONG> - Results for a single or dual CPU=20
configuration=20
<LI><STRONG>S4 RT(1)</STRONG> - Results on a single-CPU =
configuration=20
<LI><STRONG>S4 RT(2)</STRONG> - Results for a dual-CPU configuration =
</LI></UL>
<P>This data was collected on a dual CPU UltraSPARC(R)-III running at =
1015 MHz=20
with 2G of memory. </P></LI></UL>
<HR>
<H2>Installation</H2>
<UL>
<LI><A name=3Ddownload_and_install><B>Required Software</B></A>=20
<P>Sphinx-4 has been built and tested on the Solaris<SUP> <FONT=20
size=3D-1>TM</FONT></SUP> Operating Environment, Mac OS X, Linux and =
Win32=20
operating systems. Running, building, and testing Sphinx-4 requires =
additional=20
software. Before you start, you will need the following software =
available on=20
your machine.</P>
<UL>
<LI><B>Java 2 SDK, Standard Edition, v1.4</B> or better. Go to <A=20
href=3D"http://java.sun.com/">java.sun.com</A>, and select "J2SE". =
At the time=20
of writing, the latest release version is 1.4.2, which is the one we =
recommend. </LI></UL><BR>
<UL>
<LI><B>Ant 1.6.0</B> or better, available at <A=20
href=3D"http://ant.apache.org/">ant.apache.org</A>. The site has a =
manual with=20
instructions on how to download, install, and use ant. You will only =
need=20
ant if you wish to build Sphinx-4 from the source distribution. <BR>
<LI><B>CVS</B> and <B>SSH</B>, but only if you want to interact =
directly=20
with the cvs tree (which we recommend). The canonical places to get =
them are=20
<A href=3D"http://www.cvshome.org/">http://www.cvshome.org/</A> and =
<A=20
href=3D"http://openssh.org/">openssh.org</A>. If you are using =
Windows, your=20
best choice is to install <A href=3D"http://cygwin.com/">cygwin</A>, =
which=20
will give you a linux-like environment in a command prompt window. =
Make sure=20
to choose "ssh" and "cvs" when you install cygwin. =
</LI></UL><BR> =20
<LI><A name=3Dsource><B>Downloading Sphinx-4</B></A> <BR> =20
<UL>
<LI><B>Instructions for retrieving code from a release package.</B>=20
<P>Sphinx-4 has two packages available for <A=20
=
href=3D"http://sourceforge.net/project/showfiles.php?group_id=3D1904&=
package_id=3D117949">download</A>:=20
<UL>
<LI><B>sphinx4-{version}-bin.zip</B>: provides the jar files,=20
documentation, and demos=20
<LI><B>sphinx4-{version}-src.zip</B>: provides the sources, =
documentation,=20
demos, unit tests and regression tests. </LI></UL>
<P></P>
<P>See <A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/doc/Sphinx4-faq.html#whi=
ch_dist">this=20
FAQ question</A> to help determine whether you should get the binary =
or the=20
source distribution.=20
<P>After you have downloaded the distribution, unjar the ZIP files =
using the=20
<CODE>jar</CODE> command which is in the <CODE>bin</CODE> directory =
of your=20
Java installation: <PRE>jar xvf sphinx4-{version}-bin.zip
jar xvf sphinx4-{version}-src.zip</PRE>
<P></P>
<P>For both downloads, a directory called "sphinx4-{version}" will =
be=20
created. </P>
<P>There are also the RM1 acoustic model, and HUB4 acoustic and =
language=20
models, available for download at the same location on SourceForge. =
Download=20
them only if you want to run the regression tests for RM1 and HUB4. =
</P>
<LI><A name=3Dcvs><B>Instructions for retrieving code from the cvs=20
trees</B></A>=20
<P>If you want to be able to get the latest updates from the CVS =
source=20
tree, you should retrieve the code from the CVS source tree on =
SourceForge.=20
The Sphinx-4 code is located at <A=20
href=3D"http://sourceforge.net/projects/cmusphinx">sourceforge.net =
</A>as open=20
source. Please follow the instructions below to retrieve it.</P>
<UL>
<LI>Make sure that you set the environment variable CVS_RSH to =
ssh. See=20
the <A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/#troubleshooting">troubl=
eshooting</A>=20
section for more details.=20
<LI>Get the code from sourceforge.net. If you are a developer in =
the=20
cmusphinx project, then do (assuming you use bash shell): <PRE>% =
export CVS_RSH=3Dssh
% cvs -z3 =
-d:ext:<I>developername</I>@cvs.sourceforge.net:/cvsroot/cmusphinx co =
sphinx4
</PRE>where <I>developername</I> is your sourceforge developer name.=20
<LI>If you are not a developer, you have to get the code =
anonymously. When=20
prompted for a password, simply hit <ENTER>: <PRE>% cvs =
-d:pserver:anonymous@cvs.sourceforge.net:/cvsroot/cmusphinx login
% cvs -z3 -d:pserver:anonymous@cvs.sourceforge.net:/cvsroot/cmusphinx co =
sphinx4
</PRE></LI></UL></LI></UL><BR>
<LI><A name=3Dhow_build><B>Building Sphinx-4</B></A>=20
<P>Since the sphinx4-{version}-bin.zip distribution does not contain =
the=20
source code, you must download the sphinx4-{version}-src.zip, or =
retrieved the=20
code from SourceForge using CVS, in order to be able to build from the =
sources. The software required for building Sphinx-4 are listed in the =
<A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/#download_and_install">R=
equired=20
Software</A> section. </P>
<P><B>Setup JSAPI 1.0</B></P>
<P>Before you build Sphinx-4, it is important to <A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/doc/jsapi_setup.html">se=
tup=20
your environment to support the Java Speech API (JSAPI)</A>, because a =
number=20
of tests and demos rely on having JSAPI installed. </P>
<P>To build Sphinx-4, at the command prompt change to the directory =
where you=20
installed Sphinx-4 (usually, a simple "cd sphinx4" will do). Set your=20
<CODE>JAVA_HOME</CODE>, <CODE>ANT_HOME</CODE> and <CODE>PATH</CODE>=20
environment variables as described above. Then type the following: =
</P><PRE>ant</PRE>
<P>This executes the <A href=3D"http://ant.apache.org/">Apache Ant</A> =
command=20
to build the Sphinx-4 classes under the <CODE>bld</CODE> directory, =
the jar=20
files under the <CODE>lib</CODE> directory, and the demo jar files =
under the=20
<CODE>bin</CODE> directory. </P>
<P>To delete all the output from the build to give you a fresh start: =
<PRE>ant clean</PRE><BR>
<LI><A name=3Dcreate_javadocs><B>Creating Javadocs</B></A>=20
<P>The javadocs have already been built if you downloaded the=20
sphinx4-{version}-bin.zip. In order to build the javadocs yourself, =
you must=20
download the sphinx4-{version}-src.zip distribution instead. To build =
the=20
javadocs, go to the top level directory ("sphinx4-{version}"), and =
type: </P><PRE>ant javadoc</PRE>
<P>This will build javadocs from public classes, displaying only the =
public=20
methods and fields. In general, this is all the information you will =
need. If=20
you need more details, such as private or protected classes, you can =
generate=20
the corresponding javadoc by doing, for example: </P><PRE>ant =
-Daccess=3Dprivate javadoc</PRE><BR> =20
<LI><A name=3Dtroubleshooting><B>Troubleshooting</B></A><BR> =20
<OL>
<LI>How can I specify the location of the Java JDK?=20
<UL>
<LI>Using the JAVA_HOME environment variable. For the different =
versions=20
of OS, do:=20
<UL>
<LI>Unix (t)csh: <CODE>setenv JAVA_HOME=20
/lab/speech/java/j2sdk1.4.0</CODE>=20
<LI>Unix (ba)sh: <CODE>export=20
JAVA_HOME=3D'/lab/speech/java/jdk1.4.1_01'</CODE>=20
<LI>Windows/cygwin: <CODE>export=20
JAVA_HOME=3D'c:/Progra~1/J2SDK_Forte/jdk1.4.0'</CODE> =
</LI></UL></LI></UL><BR>
<LI>How can I update the code in the current working copy that I =
have?=20
<UL>
<LI>If you are using CVS, you can do a "cvs update -d". The switch =
"-d"=20
will also get new directories or files that have been added to the =
cvs=20
module since the last time you downloaded. </LI></UL><BR>
<LI>I always get a "timeout" message when I try to download/update =
the cvs=20
tree.=20
<UL>
<LI>Make sure you defined the CVS_RSH environment variable as =
'ssh'. If=20
ssh is not on your path, make sure you specify the full path. For =
the=20
different versions of OS, do:=20
<UL>
<LI>Unix (t)csh: <CODE>setenv CVS_RSH ssh</CODE>=20
<LI>Unix (ba)sh: <CODE>export =
CVS_RSH=3D'/usr/local/bin/ssh'</CODE>=20
<LI>Windows/cygwin: <CODE>export CVS_RSH=3D'ssh'</CODE>=20
</LI></UL></LI></UL><BR>
<LI><A name=3Dcygwin>What are the limitations/hacks if I am using =
cygwin?</A>=20
<UL>
<LI>Make sure that you install "ssh" and "cvs" when you install =
cygwin. If=20
you do not want to go through the list of packages trying to =
decide what=20
you need, installing everything is a good solution.=20
<LI>Cygwin does not define a home directory, which is used by cvs. =
You=20
have to explicitly define it. You are better off creating an =
environment=20
variable HOME, which will be used by every cygwin window that you =
open.=20
Follow the instructions below to create this variable on Windows =
2000.=20
<UL>
<LI>Assume your userid is "johndoe", and you created a directory =
named=20
"/home/johndoe" in the cygwin environment=20
<LI>Right click on the "My Computer" icon=20
<LI>On the menu, click on "Properties"=20
<LI>Click the "Advanced" tab=20
<LI>Select "Environment Variables"=20
<LI>Click "New" on the "User variables for johndoe" box=20
<LI>On "Variable Name", type "HOME"=20
<LI>On "Variable Value", type "c:\cygwin\home\johndoe" =
</LI></UL>When you=20
start a new cygwin window, if you type "echo $HOME", you should =
get=20
"/home/johndoe".=20
<LI>Handling absolute paths: Cygwin interprets directory paths in =
a=20
unix-like way, relative to its own "root" directory (which cygwin =
sees as=20
"/" but Windows sees as "c:\cygwin"). However, the Java platform=20
interprets directory paths via the operating system. Therefore, =
absolute=20
paths, such as "/lab/speech", will be interpreted differently by =
cygwin=20
and by the Java platform. One workaround is to keep the absolute =
path in=20
Windows (e.g. "c:\lab\") and create a link, in cygwin, from that =
location=20
(such as "ln -s /cygdrive/c/lab /lab"). If you use absolute paths =
to=20
identify data location and the directories are not setup this way, =
you may=20
encounter error messages such as: <PRE>d:\work\sphinx4>ant =
clean=20
/c: Can't open /c: No such file or directory=20
</PRE>
<LI>Handling DOS 8.3 filename format: Since cygwin deals with unix =
and DOS=20
filename formats at the same time, filenames in different files =
(e.g.,=20
build.xml, .props file) have different requirements. Paths =
interpreted=20
directly by cygwin can be as long as you want. Paths passed to the =
program, though, conform to the 8.3 convention of DOS filenames. =
Therefore=20
you have to define the path to, say, junit as something like=20
/lab/speech/ThirdP~1/junit3.7, since this string is passed from =
the=20
environment to the Java code to the OS. =
</LI></UL></LI></OL></LI></UL>
<HR>
<H2><A name=3Ddemos>Demos</A></H2>
<P>Sphinx-4 contains a number of demo programs. If you downloaded the =
binary=20
distribution (sphinx4-{version}-bin.zip), the JAR files of the demos are =
already=20
built, so you can just run them directly. However, if you downloaded the =
source=20
distribution (sphinx4-{version}-src.zip or via CVS), you need to build =
the=20
demos. Click on the links below for instructions on how to build and run =
the=20
demos.=20
<UL>
<LI><A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/demo/sphinx/helloworld/R=
EADME.html">Hello=20
World Demo</A>: a command line application that recognizes simple =
phrases=20
<LI><A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/demo/sphinx/hellodigits/=
README.html">Hello=20
Digits Demo</A>: a command line application that recognizes connected =
digits=20
<LI><A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/demo/sphinx/hellongram/R=
EADME.html">Hello=20
N-Gram Demo</A>: a command line application using an N-gram language =
model for=20
speech recognition=20
<LI><A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/demo/sphinx/zipcity/READ=
ME.html">ZipCity=20
Demo</A>: a Java Web Start technology application that recognizes =
spoken zip=20
codes and locates the associated city and state.=20
<LI><A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/demo/sphinx/wavfile/READ=
ME.html">WavFile=20
Demo</A>: a simple demo program to show how to decode audio files =
(e.g., .wav,=20
.au files).=20
<LI><A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/demo/sphinx/transcriber/=
README.html">Transcriber=20
Demo</A>: a simple demo program showing how to transcribe a continuous =
audio=20
file that has multiple utterances separated by silences=20
<LI><A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/demo/jsapi/jsgf/README.h=
tml">JSGF=20
Demo</A>: a simple demo program showing how a program can swap between =
multiple JSGF grammars=20
<LI><A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/demo/jsapi/dialog/README=
.html">Dialog=20
Demo</A>: a demo program showing how a program can swap between =
multiple JSGF=20
and dictation gramamrs=20
<LI><A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/demo/jsapi/tags/README.h=
tml">Action=20
Tags Demo</A>: a demo program showing how to use action tags for=20
post-processing of RuleParse objects obtained from JSGF grammars.=20
<LI><A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/demo/sphinx/confidence/R=
EADME.html">Confidence=20
Demo</A>: a simple demo program showing how to obtain confidence =
scores for=20
result. </LI></UL>
<P></P>
<P>There is also a <A=20
href=3D"http://cmusphinx.sourceforge.net/sphinx4/tests/live/README.html">=
live-mode=20
test program</A> (this link only works if you downloaded the source=20
distribution), which is available if you download the =
sphinx-src-{version}.zip=20
file but not available in the sphinx-bin-{version}.zip file. </P>
<P>The <A=20
href=3D"http://cmusphinx.sourceforge.net/sphinx4/javadoc/edu/cmu/sphinx/t=
ools/audio/doc-files/HowToRunAudioTool.html">AudioTool</A>=20
is a visual tool that records and displays the waveform and spectrogram =
of an=20
audio signal. It is available in both the binary and source releases. =
</P>
<HR>
<H2>Sphinx-4 in Detail</H2>
<UL>
<LI><A name=3Dwhitepaper><B>Sphinx-4 Whitepaper</B></A>
<P></P><A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/doc/Sphinx4Whitepaper.pd=
f">Sphinx-4:=20
A Flexible Open Source Framework for Speech Recognition</A> describes =
the=20
framework and implementation of Sphinx-4 from a speech-technologist's=20
perspective. Please read this if you'd like to extend Sphinx-4. =
<BR> =20
<LI><A name=3Dsphinx_properties><B>Frequently asked questions about=20
Sphinx-4</B></A>
<P></P>The document <A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/doc/Sphinx4-faq.html">Fr=
equently=20
asked questions about Sphinx-4 </A>contains answers to a number of =
frequently=20
asked questions about Sphinx-4 <BR> =20
<LI><A name=3Dsphinx_properties><B>Understanding Sphinx-4 =
Configuration=20
Management </B>
<P></A>The document <A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/javadoc/edu/cmu/sphinx/u=
til/props/doc-files/ConfigurationManagement.html">Sphinx-4=20
Configuration Management</A> describes, in detail, how to configure a =
Sphinx-4=20
system. <BR> </P>
<LI><A name=3Dsphinx_instrumentation><B>Understanding Sphinx-4 =
Instrumentation=20
</B>
<P></A>The document <A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/javadoc/edu/cmu/sphinx/i=
nstrumentation/doc-files/Instrumentation.html">Sphinx-4=20
Instrumentation </A>describes, in detail, how to use the =
instrumentation=20
facilities of the Sphinx-4 system. <BR> </P>
<LI><A name=3Dbatch_tests><B>Running the Regression Tests</B></A>=20
<P>Sphinx-4 contains a number of regression tests using common speech=20
databases. Again, you have to download the source distribution or =
downloaded=20
the source tree using CVS in order to get the regression tests =
directory. The=20
regression tests we have are: </P>
<UL>
<LI><A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/#isolated_digits_test">I=
solated=20
Digits - TI46</A>=20
<LI><A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/#connected_digits_test">=
Connected=20
Digits - TIDIGITS</A>=20
<LI><A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/#small_vocab_test">Small=
=20
Vocabulary - AN4</A>=20
<LI><A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/#medium_vocab_test">Medi=
um=20
Vocabulary - RM1</A>=20
<LI><A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/#large_vocab_test">Large=
=20
Vocabulary - HUB4</A> </LI></UL>
<P>Before you run any of the tests, make sure that you have built =
Sphinx-4=20
already. To do so, go to the top level and type: <PRE>ant</PRE>
<P></P>
<P>You also need to make sure you have the appropriate acoustic =
model(s)=20
installed. More details below. </P>
<P>The Sphinx-4 regression tests have different directories for the =
different=20
tasks. The directory sphinx4/tests/performance contains directories =
named=20
ti46, tidigits, an4, rm1, hub4, and some other tests. Each of these=20
directories contains a build.xml with targets specific to the =
particular task.=20
The build.xml allows you to run a number of different tests. Type: =
<PRE>ant -projecthelp</PRE>to list a help text with the possible =
targets.=20
<P></P>
<P><A name=3Disolated_digits_test><BR><B>Isolated Digits - =
TI46</B></A> </P>
<P>The TIDIGITS models are already included as part of the =
distribution.=20
Therefore, you do not need to download them separately. You must have =
the TI46=20
test data, available from the <A=20
=
href=3D"http://www.ldc.upenn.edu/Catalog/CatalogEntry.jsp?catalogId=3DLDC=
93S9">LDC=20
TI46</A> website. </P>
<P>You need to edit the batch file called <CODE>ti46.batch</CODE>, =
located in=20
<CODE>tests/performance/ti46</CODE> directory. You will need to change =
it such=20
that it matches where you stored the TI46 test files. Refer to the =
section <A=20
href=3D"http://cmusphinx.sourceforge.net/sphinx4/#batch_files">Batch =
Files</A>=20
for detail about the format of batch files. </P>
<P>To run the tests: </P><PRE> % cd sphinx4/tests/performance/ti46
% ant -projecthelp # to see a list of possible targets
% ant ti46_wordlist
</PRE>
<P><A name=3Dconnected_digits_test><BR><B>Connected Digits - =
TIDIGITS</B></A>=20
</P>
<P>The TIDIGITS models are already included as part of the =
distribution.=20
Therefore, you do not need to download them separately.=20
<P>You must have the TIDIGITS test data, available from the <A=20
=
href=3D"http://www.ldc.upenn.edu/Catalog/CatalogEntry.jsp?catalogId=3DLDC=
93S10">LDC=20
TIDIGITS</A> website.=20
<P>You need to edit the batch file called <CODE>tidigits.batch</CODE>, =
located=20
in the <CODE>tests/performance/tidigits</CODE> directory. You will =
need to=20
change it such that it matches where you stored the TIDIGITS test =
files. Refer=20
to the section <A=20
href=3D"http://cmusphinx.sourceforge.net/sphinx4/#batch_files">Batch =
Files</A>=20
for detail about the format of batch files.=20
<P>To run the tests: <PRE> % cd sphinx4/tests/performance/tidigits
% ant -projecthelp # to see a list of possible targets
% ant tidigits_flat_unigram
</PRE>
<P><A name=3Dsmall_vocab_test><BR><B>Small Vocabulary - AN4</B></A>=20
<P>The Wall Street Journal (WSJ) models are already included as part =
of the=20
distribution. Therefore, you do not need to download them separately.=20
<P>Download the big endian raw audio format of the <A=20
href=3D"http://www.speech.cs.cmu.edu/databases/an4/">AN4 Database</A>. =
Unpack it=20
at a directory of your choice: <PRE> % gunzip =
an4_raw.bigendian.tar.gz
% tar -xvf an4_raw.bigendian.tar
</PRE>
<P>Then update the following batch files (located in the=20
<CODE>tests/performance/an4</CODE> directory), so that they match up =
with=20
where you unpacked the AN4 data. You probably just need to replace all =
instances of the string <CODE>"/lab/speech/sphinx4/data"</CODE> inside =
these=20
batch files. Please refer to the <A=20
href=3D"http://cmusphinx.sourceforge.net/sphinx4/#batch_files">Batch =
Files</A>=20
section for details about batch files:=20
=
<P><CODE>an4_full.batch<BR>an4_spelling.batch<BR>an4_words.batch</CODE>=20
<P>After you have updated the batch files, you can run the tests by: =
<PRE> % cd sphinx4/tests/performance/an4
% ant -projecthelp # to see a list of possible targets
% ant an4_words_unigram
</PRE>
<P><A name=3Dmedium_vocab_test><BR><B>Medium Vocabulary - RM1</B></A>=20
<P>Make sure that you have downloaded the binary RM1 model file, =
called=20
<CODE>RM1_13dCep_16k_40mel_130Hz_6800Hz.jar</CODE>, located at the=20
<CODE>sphinx4</CODE> package in the <A=20
=
href=3D"http://sourceforge.net/project/showfiles.php?group_id=3D1904&=
package_id=3D117949">downloads=20
page</A>. <BR>Then in the build file for the RM1 tests,=20
<CODE>sphinx4/tests/performance/rm1/build.xml</CODE>, changed the=20
<CODE>classpath</CODE> property of the build file to point to the =
location of=20
your <CODE>RM1_13dCep_16k_40mel_130Hz_6800Hz.jar</CODE>.=20
<P>You must have the RM1 test data, available from the <A=20
=
href=3D"http://www.ldc.upenn.edu/Catalog/CatalogEntry.jsp?catalogId=3DLDC=
93S3B">LDC=20
RM1</A> website.=20
<P>You also need to prepare a batch file called =
<CODE>rm1.batch</CODE>, by=20
following instructions in the <A=20
href=3D"http://cmusphinx.sourceforge.net/sphinx4/#batch_files">Batch =
Files</A>=20
section. There is already one in the RM1 test directory, but it will =
not work=20
for you, since the paths to test files will not match your setup.=20
<P>To run the tests: <PRE> % cd sphinx4/tests/performance/rm1
% ant -projecthelp # to see a list of possible targets
% ant rm1_bigram
</PRE>
<P><A name=3Dlarge_vocab_test><BR><B>Large Vocabulary - HUB4</B></A>=20
<P>You must have the HUB4 test data, available from the <A=20
=
href=3D"http://wave.ldc.upenn.edu/Catalog/CatalogEntry.jsp?catalogId=3DLD=
C2000S88">LDC=20
HUB4</A> website. </P>
<P>You must download the binary HUB4 model file, called=20
<CODE>HUB4_8gau_13dCep_16k_40mel_133Hz_6855Hz.jar</CODE>, and the =
binary HUB4=20
trigram language model, called <CODE>HUB4_trigram_lm.zip</CODE>, both =
located=20
at the <CODE>sphinx4</CODE> package in the <A=20
=
href=3D"http://sourceforge.net/project/showfiles.php?group_id=3D1904&=
package_id=3D117949">downloads=20
page</A>. For the trigram language model file, unpack it by: <PRE>jar =
xvf HUB4_trigram_lm.zip</PRE>The trigram model file is called=20
<CODE>language_model.arpaformat.DMP</CODE>. Then, in the build file =
for the=20
HUB4 tests, <CODE>sphinx4/tests/performance/hub4/build.xml</CODE>, =
changed the=20
<CODE>classpath</CODE> property of the build file to point to the =
location of=20
your <CODE>HUB4_8gau_13dCep_16k_40mel_133Hz_6855Hz.jar</CODE>. In the=20
configuration file, =
<CODE>tests/performance/hub4/hub4.config.xml</CODE>,=20
change the 'location' of the 'trigramModel' component to where your=20
<CODE>language_model.arpaformat.DMP</CODE> file is located.=20
<P></P>
<P>You also need to prepare a batch file, which is currently called=20
<CODE>f0_hub4.batch</CODE> in the build.xml file, by following =
instructions in=20
the <A =
href=3D"http://cmusphinx.sourceforge.net/sphinx4/#batch_files">Batch=20
Files</A> section. </P>
<P>To run the test: <PRE> % cd sphinx4/tests/performance/hub4
% ant -projecthelp # to see a list of possible targets
% ant hub4_trigram
</PRE>
<P><BR> </P>
<LI><A name=3Dsetup_test><B>Setting up a Regression Test</B></A>=20
<P>Each batch mode regression test consists of the following =
components:=20
<UL>
<LI><A =
href=3D"http://cmusphinx.sourceforge.net/sphinx4/#input_files">Test=20
data</A> - the audio or cepstral data to perform the test on. This =
is=20
usually some well known database such as TIDIGITS or HUB-4. =
Alternatively,=20
it can also be data that you recorded on your own.=20
<LI><A =
href=3D"http://cmusphinx.sourceforge.net/sphinx4/#batch_files">Batch=20
File</A> - this text file lists the location of all the test files, =
as well=20
as the transcription of the test file.=20
<LI>Acoustic model & Dictionary=20
<LI>Configuration file - specifies the configuration of the system =
you use=20
to test the data.=20
<LI>Grammar file - this can either be a word list file, N-gram =
language=20
model, or a BNF-style grammar file (such as JSGF).=20
<LI><A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/javadoc/edu/cmu/sphinx/t=
ools/batch/BatchModeRecognizer.html">Batch-mode=20
Recognizer</A> - this is the Sphinx-4 batch-mode recognizer. =
</LI></UL>
<P>To learn about how to setup a regression test, take a look at the =
<A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/#an4_walkthrough">walkth=
rough=20
of setting up the AN4 tests</A>.=20
<P><BR><A name=3Dbatch_files><B>Batch Files</B></A>=20
<P>Batch files are used in batch mode regressions tests. It is a text =
file=20
that contains the list of files to be processed, with the =
transcription for=20
each file. The format is as shown below: one line for each file, where =
the=20
first element in a line is the file name, which can be an absolute or =
relative=20
path, and includes the file extension; after the file name, the words =
that=20
make up the transcription for the audio. Sphinx-4 uses the =
transcription=20
provided here to compute the system's accuracy after each sentence is=20
processed. An utterance's processing produces in a hypothesis for what =
was=20
said. This hypothesis is compared with the transcription, i.e., the =
hypothesis=20
is aligned against the reference transcript, and a summary of the =
results is=20
reported. =
</P><PRE>/lab/speech/sphinx4/data/tidigits/test/raw16k/man/man.ah.24z982z=
a.raw two four zero nine eight two zero
/lab/speech/sphinx4/data/tidigits/test/raw16k/man/man.ah.25896o4a.raw =
two five eight nine six oh four
</PRE>
<P>An example batch file is <A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/tests/performance/tidigi=
ts/tidigits.batch">tidigits.batch</A>=20
(this link only works if you downloaded the source distribution). =
<BR> =20
<P><A name=3Dinput_files><B>Input Audio/Cepstral Files</B></A>=20
<P>The audio files used by Sphinx-4 can contain raw audio or cepstra, =
which is=20
a form of encoded speech. The Java platform has support for other data =
formats, such as MS WAV or Sun's au, but, provided as is, Sphinx-4 can =
handle=20
only raw data. </P>
<P>The audio defaults to 2 bytes/sample, at 16000 samples per second. =
The=20
files are expected to be binaries without header. The Java platform =
assumes=20
big endian order, always. These defaults can be changed. For example, =
the byte=20
order or the sampling rate can be changed. </P>
<P>The input can also be cepstra. The cepstral file has a 4 byte =
integer=20
containing the number of floats that follow. The following floats are =
13=20
dimensional vectors concatenated. Notice that since the first piece of =
information is the number of floats, the total file size can be =
computed. If a=20
comparisons with the actual size fails, either the byte order has to =
be=20
reversed, or the file is corrupted. Importantly, the byte order can be =
automatically detected. </P>
<P><BR><A name=3Dan4_walkthrough><B>Walkthrough of Setting up the AN4=20
Tests</B></A>=20
<P>To illustrate the process of setting up a regression test, lets use =
AN4, an=20
existing test, as an example. Use the following steps to create the =
AN4 tests.=20
<P>
<OL>
<LI><B>Create a test directory</B> - the various files for each test =
set=20
(e.g., config file, batch file, grammar files, etc..) should reside =
in its=20
own directory, normally under <CODE>tests/performance</CODE>. For =
example,=20
the AN4 tests reside in <CODE>tests/performance/an4</CODE>.=20
<P></P>
<LI><B>Obtain and convert the test database</B> - download the AN4 =
test=20
database from the <A =
href=3D"http://www.speech.cs.cmu.edu/databases/an4/">AN4=20
website</A> (choose "Raw audio (.raw) format, big endian byte =
order").=20
Unpack the downloaded tarball into a directory of your choice, which =
in our=20
case is <CODE>/lab/speech/sphinx4/data/an4</CODE>. Since the AN4 =
test data=20
already comes in raw audio format, no conversion is necessary. =
However,=20
other test databases might require conversion to raw audio. For =
example, the=20
TIDIGITS test files are in SPHERE format, so it is necessary to =
convert them=20
to raw audio format before it can be read by the Sphinx-4 front end. =
This is=20
usually accomplished by using the program <CODE>sox</CODE> on UNIX=20
platforms.=20
<P></P>
<LI><B>Create a batch file</B> - a test database usually contains a=20
transcript (i.e., the actual text of the speech data) of all the =
test files.=20
Using the transcript file, create a <A=20
href=3D"http://cmusphinx.sourceforge.net/sphinx4/#batch_files">batch =
file</A>,=20
listing the location of the test files and their corresponding =
transcript.=20
For example, our <CODE>tests/performance/an4/an4_full.batch</CODE> =
file=20
looks like: =
<PRE>/lab/speech/sphinx4/data/an4/an4_clstk/fash/an251-fash-b.raw yes
/lab/speech/sphinx4/data/an4/an4_clstk/fash/an253-fash-b.raw go
/lab/speech/sphinx4/data/an4/an4_clstk/fash/an254-fash-b.raw yes
/lab/speech/sphinx4/data/an4/an4_clstk/fash/an255-fash-b.raw u m n y h =
six
...
</PRE>All batch files should reside in the test directory, in this case=20
<CODE>tests/performance/an4</CODE>.=20
<P></P>
<LI><B>Acoustic model & Dictionary</B> - use the Wall Street =
Journal=20
(WSJ) models for the AN4 test, which is already included as a JAR =
file in=20
the binary distribution (sphinx4-{version}-bin.zip). If you =
downloaded the=20
source distribution, building it by running <CODE>ant</CODE> at the =
top=20
level directory will create the JAR file for the WSJ model. The JAR =
file=20
should be included in the classpath of the application you are =
deploying. In=20
this case, the WSJ JAR file=20
(<CODE>lib/WSJ_8gau_13dCep_16k_40mel_130Hz_6800Hz.jar</CODE>) is =
included in=20
the java command line inside the build.xml run file. We also need to =
specify=20
in the config file (see the next item below) the acoustic model =
class we are=20
using, which in this case is=20
=
<CODE>edu.cmu.sphinx.model.acoustic.WSJ_8gau_13dCep_16k_40mel_130Hz_6800H=
z=20
</CODE>. The dictionary is also specified in the config file using =
the=20
resource mechanism of Sphinx-4.=20
<P></P>
<LI><B>Creating the config file & grammar files</B> - In order =
to create=20
your own configuration file, you must first understand the <A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/javadoc/edu/cmu/sphinx/u=
til/props/doc-files/ConfigurationManagement.html">Sphinx-4=20
configuration management</A> system. The AN4 config file is=20
<CODE>tests/performance/an4/an4.config.xml</CODE>, please take a =
look at it.=20
This file describes how the batch-mode recognizer and its various=20
sub-components should be configured. Note that this file also =
contains=20
configurations for the live-mode recognizer, which is not the =
subject of=20
interest of this walkthrough. In the following we will refer to =
components=20
in the config file using <CODE>highlights</CODE>.=20
<P>In an4.config.xml, the batch-mode recognizer is called=20
<CODE>batch</CODE>. It uses the Recognizer called=20
<CODE>wordRecognizer</CODE>, which contains the =
<CODE>decoder</CODE>, as=20
well as various monitors that keeps track of recognition accuracy, =
speed,=20
and memory. The <CODE>decoder</CODE> contains the=20
<CODE>searchManager</CODE>, which in turn contains the=20
<CODE>linguist</CODE>, the <CODE>pruner</CODE>, the =
<CODE>scorer</CODE>, and=20
the <CODE>activeList</CODE>. Refer to the <A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/javadoc/index.html">Java=
doc</A>=20
(go to bottom of the page) for a description of each of these =
components.=20
The linguist used is the <CODE>flatLinguist</CODE>, and the grammar =
of the=20
<CODE>flatLinguist</CODE> is either the =
<CODE>wordListGrammar</CODE>, which=20
is a file with a list of words, e.g., <PRE>AND
APOSTROPHE
APRIL
AREA
AUGUST
CODE
</PRE>the <CODE>lmGrammar</CODE> (i.e., N-gram language model), or=20
<CODE>fstGrammar</CODE> (i.e., finite state tranducer grammar). The=20
<CODE>lmGrammar</CODE> uses a language model file (text-based for =
AN4)=20
generated by the <A =
href=3D"http://www.speech.cs.cmu.edu/SLM_info.html">CMU=20
Statistical Language Modeling (SLM) Toolkit</A>. The=20
<CODE>flatLinguist</CODE> also specifies the acoustic model used, =
and in=20
this case it is the WSJ models. The location and format of the WSJ =
model, as=20
well as the location of the various files in the model, are also =
specified.=20
The <CODE>scorer</CODE> contains the front end, which is called=20
<CODE>mfcFrontEnd</CODE> since it produces MFCC features.=20
<P></P>
<LI><B>Creating a build.xml for Ant</B> - a file called=20
<CODE>build.xml</CODE> is necessary to run Ant. This file is the Ant =
version=20
of the Makefile in Make. All Ant targets are listed in this file. =
For=20
details on how to write this file, refer to the documentation at <A=20
href=3D"http://ant.apache.org/">http://ant.apache.org/</A>. Lets use =
the first=20
Ant target, <CODE>an4_words_wordlist</CODE>, as an example. This Ant =
target=20
invokes the <CODE>java</CODE> command on the class=20
<CODE>edu.cmu.sphinx.tools.batch.BatchModeRecognizer</CODE>. This =
class=20
takes a configuration file (<CODE>an4.config.xml</CODE>) and a batch =
file=20
(<CODE>an4_words.batch</CODE>) as arguments. This class looks for =
the=20
component named <CODE>batch</CODE> in the configuration file. The=20
configuration manager will create this component (and its =
subcomponents).=20
Therefore, the component=20
<CODE>edu.cmu.sphinx.tools.batch.BatchModeRecognizer</CODE> should =
always be=20
named <CODE>"batch"</CODE> in the config.xml file. Other AN4 Ant =
targets are=20
created similarly.=20
<P></P>
<LI><B>Setup Complete</B> - At this point, we have completed the =
setup of=20
the AN4 tests. You can now run the AN4 tests by following =
instructions in <A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/#small_vocab_test">small=
=20
vocabulary tests</A>. </LI></OL><BR> =20
<LI><A name=3Dacoustic_models><B>Acoustic Models</B></A>=20
<P>The two main acoustic models that are used by Sphinx-4, TIDIGITS =
and Wall=20
Street Journal, are already included in the <CODE>"lib"</CODE> =
directory of=20
the binary distribution. For the source distribution, you will build =
it when=20
you type <CODE>ant</CODE> at the top level directory. Our regression =
tests=20
also uses the RM1 and HUB4 models, which are available for download =
separately=20
on the download page. Sphinx-4 can handle model packages provided as a =
jar=20
file. </P>
<P>Each acoustic model implements the <A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/javadoc/edu/cmu/sphinx/l=
inguist/acoustic/AcousticModel.html">AcousticModel=20
interface</A>. For example, the WSJ models are wrapped by a class =
called=20
=
<CODE>edu.cmu.sphinx.model.acoustic.WSJ_8gau_13dCep_16k_40mel_130Hz_6800H=
z</CODE>,=20
which implements the AcousticModel interface. This implementation =
class is in=20
the JAR file of the models, together with the actual data files of the =
model.=20
This way, two simple steps are need to use a particular acoustic =
model: </P>
<OL>
<LI>Include the JAR file in your classpath.=20
<LI>Specify the model implementation class in the config file. =
</LI></OL>
<P>You can find out the model implementation class of a JAR file using =
the=20
<CODE>java -jar</CODE> command. For example, you can find out the =
model class=20
of the WSJ model by: <PRE>sphinx4>java -jar =
lib/WSJ_8gau_13dCep_16k_40mel_130Hz_6800Hz.jar
Wall Street Journal acoustic models
Class: =
edu.cmu.sphinx.model.acoustic.WSJ_8gau_13dCep_16k_40mel_130Hz_6800Hz
Is Binary: true
Sparse Form: false
Filters: 40
Vector Length: 39
Gaussians: 8
Model Definition: etc/WSJ_clean_13dCep_16k_40mel_130Hz_6800Hz.4000.mdef
Data Location: cd_continuous_8gau
Feature Type: cepstra_delta_doubledelta
Sample Rate: 16000
Description: Wall Street Journal acoustic models
Number Fft Points: 512
Max Freq: 6800
Min Freq.: 130
</PRE>The print out also includes details about how the model was =
trained, but=20
this is not important for the average user.=20
<P></P><BR> =20
<LI><A name=3Dlanguage_models><B>Language Models</B></A>=20
<P>The language model used by Sphinx-4 follows the ARPA format. =
Language=20
models provided with the acoustic model packages were created with the =
Carnegie Mellon University Statistical Language Modeling toolkit (CMU =
SLM=20
toolkit), available <A =
href=3D"http://www.speech.cs.cmu.edu/SLM_info.html">at=20
CMU</A>. A manual is available there.</P>
<P>The language model is created from a list of transcriptions. Given =
a file=20
with training transcription, the following script creates a list of =
words that=20
appear in the transcriptions, then creates a bigram and a trigram LM =
files in=20
the ARPA format. The file with extension ccs contains the context =
cues, and it=20
is usually a list of words used as markers - beginning or end of =
speech=20
etc.</P><PRE>set task =3D RM
# Location of the CMU SLM toolkit
set bindir =3D ~/src/CMU-SLM_Toolkit_v2/bin
cat $task.transcript | $bindir/text2wfreq | $bindir/wfreq2vocab > =
$task.vocab
set mode =3D "-absolute"
# Create bigram
cat $task.transcript | $bindir/text2idngram -n 2 -vocab $task.vocab | \
$bindir/idngram2lm $mode -context $task.ccs -n 2 -vocab $task.vocab \
-idngram - -arpa $task.bigram.arpa
# Create trigram
cat $task.transcript | $bindir/text2idngram -n 3 -vocab $task.vocab | \
$bindir/idngram2lm $mode -context $task.ccs -n 3 -vocab $task.vocab \
-idngram - -arpa $task.trigram.arpa
</PRE><BR> =20
<LI><A name=3Dbnf_grammars><B>BNF-Style Grammars</B></A>=20
<P>Sphinx-4 uses the Java Speech API Grammar Format (JSGF) to perform =
speech=20
recognition using a BNF-style grammar. Currently, you can only use =
JSGF=20
grammars with the FlatLinguist. To specify JSGF grammars, set the =
following in=20
the configuration file: <PRE><component name=3D"flatLinguist" =
type=3D"edu.cmu.sphinx.linguist.flat.FlatLinguist">
<property name=3D"grammar" value=3D"jsgfGrammar">
// ... other properties ...
</component>
<component name=3D"jsgfGrammar" =
type=3D"edu.cmu.sphinx.jsapi.JSGFGrammar">
<property name=3D"grammarLocation" value=3D"...URL of grammar =
directory"/>
</component>
</PRE>
<P>For information on how to write JSGF grammars, and how to specify =
the=20
location of your JSGF grammar file(s), and the limitations of the =
current=20
implementation of JSGF grammar, please refer to the <A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/javadoc/edu/cmu/sphinx/j=
sapi/JSGFGrammar.html">Javadocs=20
for JSGFGrammar</A>. <BR> </P>
<LI><A name=3Darchitecture_and_api1><B>Architecture and API</B></A>=20
<P>The Sphinx-4 API can be found in the <A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/javadoc/index.html">java=
doc=20
documentation</A>. </P>
<P>If the previous is broken, please build the javadocs using the =
instructions=20
in <A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/#create_javadocs">Creati=
ng=20
Javadocs</A>. In fact, rebuilding javadocs is something you should do =
every=20
time you change code in Sphinx-4. </P>
<P>In this section, we will provide an overview of Sphinx-4, starting =
with an=20
introduction of HMM-based recognizers. We will highlight in=20
<S4KEYWORD>red</S4KEYWORD> those keywords that are critical to =
understanding=20
Sphinx-4. </P>
<H4>Overview of an HMM-based Speech Recognition System</H4>
<P>Sphinx-4 is an HMM-based speech recognizer. =
<S4KEYWORD>HMM</S4KEYWORD>=20
stands for Hidden Markov Models, which is a type of statistical model. =
In=20
HMM-based speech recognizers, each unit of sound (usually called a =
phoneme) is=20
represented by a statistical model that represents the distribution of =
all the=20
evidence (data) for that phoneme. This is called the =
<S4KEYWORD>acoustic=20
model</S4KEYWORD> for that phoneme. When creating an acoustic model, =
the=20
speech signals are first transformed into a sequence of vectors that =
represent=20
certain characteristics of the signal, and the parameters of the =
acoustic=20
model are then estimated using these vectors (usually called=20
<S4KEYWORD>features</S4KEYWORD>). This process is called training the =
acoustic=20
models. </P>
<P>During speech recognition, features are derived from the incoming =
speech=20
(we will use "speech" to mean the same thing as "audio") in the same =
way as in=20
the training process. The component of the recognizer that generates =
these=20
features is called the <S4KEYWORD>front end</S4KEYWORD>. These live =
features=20
are scored against the acoustic model. The =
<S4KEYWORD>score</S4KEYWORD>=20
obtained indicates how likely that a particular set of features =
(extracted=20
from live audio) belongs to the phoneme of the corresponding acoustic =
model.=20
</P>
<P>The process of speech recognition is to find the best possible =
sequence of=20
words (or units) that will fit the given input speech. It is a=20
<S4KEYWORD>search</S4KEYWORD> problem, and in the case of HMM-based=20
recognizers, a graph search problem. The graph represents all possible =
sequences of phonemes in the entire <S4KEYWORD>language</S4KEYWORD> of =
the=20
task under consideration. The graph is typically composed of the HMMs =
of sound=20
units concatenated in a guided manner, as specified by the=20
<S4KEYWORD>grammar</S4KEYWORD> of the task. As an example, lets look =
at a=20
simple search graph that decodes the words "one" and "two". It is =
composed of=20
the HMMs of the sounds units of the words "one" and "two": </P><IMG=20
=
src=3D"http://cmusphinx.sourceforge.net/sphinx4/doc/1-2-searchgraph.jpg">=
=20
<P>Constructing the above graph requires knowledge from various =
sources. It=20
requires a <S4KEYWORD>dictionary</S4KEYWORD>, which maps the word =
"one" to the=20
phonemes W, AX and N, and the word "two" to T and OO. It requires the =
acoustic=20
model to obtain the HMMs for the phonemes W, AX, N, T and OO. In =
Sphinx-4, the=20
task of constructing this search graph is done by the=20
<S4KEYWORD>linguist</S4KEYWORD>. </P>
<P>Usually, the search graph also has information about how likely =
certain=20
words will occur. This information is supplied by the =
<S4KEYWORD>language=20
model</S4KEYWORD>. Suppose that, in our example, the probability of =
someone=20
saying "one" (e.g., 0.8) is much higher than saying "two" (0.2). Then, =
in the=20
above graph, the probability of the transition between the entry node =
and the=20
first node of the HMM for W will be 0.8, while the probability of the=20
transition between the entry node and the first node of the HMM for T =
will be=20
0.2. The path to "one" will consequently have a higher score. </P>
<P>Once this graph is constructed, the sequence of parametrized speech =
signals=20
(i.e., the features) is matched against different paths through the =
graph to=20
find the best fit. The best fit is usually the least cost or highest =
scoring=20
path, depending on the implementation. In Sphinx-4, the task of =
searching=20
through the graph for the best path is done by the <S4KEYWORD>search=20
manager</S4KEYWORD>. </P>
<P>As you can see from the above graph, a lot of the nodes have self=20
transitions. This can lead to a very large number of possible paths =
through=20
the graph. As a result, finding the best possible path can take a very =
long=20
time. The purpose of the <S4KEYWORD>pruner</S4KEYWORD> is to reduce =
the number=20
of possible paths during the search, using heuristics like pruning =
away the=20
lowest scoring paths. </P>
<P>As we described earlier, the input speech signal is transformed =
into a=20
sequence of feature vectors. After the last feature vector is decoded, =
we look=20
at all the paths that have reached the final exit node (the red node). =
The=20
path with the highest score is the best fit, and a=20
<S4KEYWORD>result</S4KEYWORD> taking all the words of that path is =
returned.=20
</P>
<H4><A name=3DarchitectureComponents>Sphinx-4 Architecture and Main=20
Components</A></H4>
<P>In this section, we describe the main components of Sphinx-4, and =
how they=20
work together during the recognition process. First of all, lets look =
at the=20
architecture diagram of Sphinx-4. It contains almost all the concepts =
(the=20
words in red) that were introduced in the previous section. There are =
a few=20
additional concepts in the diagram, which we will explain promptly. =
</P>
<CENTER><IMG=20
=
src=3D"http://cmusphinx.sourceforge.net/sphinx4/doc-files/architecture.gi=
f">=20
</CENTER>
<P>When the recognizer starts up, it constructs the front end (which =
generates=20
features from speech), the decoder, and the linguist (which generates =
the=20
search graph) according to the configuration specified by the user. =
These=20
components will in turn construct their own subcomponents. For =
example, the=20
linguist will construct the acoustic model, the dictionary, and the =
language=20
model. It will use the knowledge from these three components to =
construct a=20
search graph that is appropriate for the task. The decoder will =
construct the=20
search manager, which in turn constructs the scorer, the pruner, and =
the=20
active list. </P>
<P>Most of these components represents interfaces. The search manager, =
linguist, acoustic model, dictionary, language model, active list, =
scorer,=20
pruner, and search graph are all Java interfaces. There can be =
different=20
implementations of these interfaces. For example, there are two =
different=20
implementations of the search manager. Then, how does the system know =
which=20
implementation to use? It is specified by the user via the =
configuration file,=20
an XML-based file that is loaded by the <S4KEYWORD>configuration=20
manager</S4KEYWORD>. In this configuration file, the user can also =
specify the=20
<S4KEYWORD>properties</S4KEYWORD> of the implementations. One example =
of a=20
property is the sample rate of the incoming speech data. </P>
<P>The <S4KEYWORD>active list</S4KEYWORD> is a component that requires =
explanation. Remember we mentioned that there can be many possible =
paths=20
through the search graph. Sphinx-4 currently implements a=20
<S4KEYWORD>token</S4KEYWORD>-passing algorithm. Each time the search =
arrives=20
at the next state in the graph, a token is created. A token points to =
the=20
previous token, as well as the next state. The active list keeps track =
of all=20
the current active paths through the search graph by storing the last =
token of=20
each path. A token has the score of the path at that particular point =
in the=20
search. To perform pruning, we simply prune the tokens in the active =
list.=20
</P>
<P>When the application asks the recognizer to perform recognition, =
the search=20
manager will ask the scorer to score each token in the active list =
against the=20
next feature vector obtained from the front end. This gives a new =
score for=20
each of the active paths. The pruner will then prune the tokens (i.e., =
active=20
paths) using certain heuristics. Each surviving paths will then be =
expanded to=20
the next states, where a new token will be created for each next =
state. The=20
process repeats itself until no more feature vectors can be obtained =
from the=20
front end for scoring. This usually means that there is no more input =
speech=20
data. At that point, we look at all paths that have reached the final =
exit=20
state, and return the highest scoring path as the result to the =
application.=20
</P>
<H4><A name=3Dconfiguration>Sphinx-4 Configuration System</A></H4>
<P>The performance of Sphinx-4 critically depends on your task and how =
you=20
configured Sphinx-4 to suit your task. For example, a large vocabulary =
task=20
needs a different linguist than a small vocabulary task. Your system =
has to be=20
configured differently for the two tasks. This section will not tell =
you the=20
exact configuration for different tasks, which will be dealt with =
later.=20
Instead, this section will introduce you to the configuration =
mechanism of=20
Sphinx-4, which is via an XML-based configuration file. Please click =
on the=20
document <A=20
=
href=3D"http://cmusphinx.sourceforge.net/sphinx4/javadoc/edu/cmu/sphinx/u=
til/props/doc-files/ConfigurationManagement.html">Sphinx-4=20
Configuration Management</A> to learn how to do this. It is important =
that you=20
read this document before you proceed. </P><BR> </LI></UL>
<HR>
Copyright 1999-2004 Carnegie Mellon University.<BR>Portions Copyright =
2002-2004=20
Sun Microsystems, Inc.<BR>Portions Copyright 2002-2004 Mitsubishi =
Electric=20
Research Laboratories.<BR>All Rights Reserved. Usage is subject to <A=20
href=3D"http://cmusphinx.sourceforge.net/sphinx4/license.terms">license =
terms</A>.=20
</FONT></BODY></HTML>
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