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authorYuri Chornoivan <yurchor@ukr.net>2010-01-21 16:56:52 +0100
committerSylvestre Ledru <sylvestre.ledru@scilab.org>2010-01-21 16:56:52 +0100
commita57bb4cbbc7fa77de07de8d26d5bb49202511515 (patch)
treee5541a10c51bb746045ac2bddcf2f21c971407bf /scilab/modules/signal_processing
parent1952d02b3170753f8d55f35af4fd707baba5ba73 (diff)
downloadscilab-a57bb4cbbc7fa77de07de8d26d5bb49202511515.zip
scilab-a57bb4cbbc7fa77de07de8d26d5bb49202511515.tar.gz
Fix many english typos
Diffstat (limited to 'scilab/modules/signal_processing')
-rw-r--r--scilab/modules/signal_processing/demos/arma/arma3.dem.sce2
-rw-r--r--scilab/modules/signal_processing/help/en_US/fft.xml2
-rw-r--r--scilab/modules/signal_processing/help/en_US/srfaur.xml2
3 files changed, 3 insertions, 3 deletions
diff --git a/scilab/modules/signal_processing/demos/arma/arma3.dem.sce b/scilab/modules/signal_processing/demos/arma/arma3.dem.sce
index c9b335f..e6cd688 100644
--- a/scilab/modules/signal_processing/demos/arma/arma3.dem.sce
+++ b/scilab/modules/signal_processing/demos/arma/arma3.dem.sce
@@ -35,7 +35,7 @@ halt();
35 35
36my_handle = scf(100001);clf(my_handle,"reset"); 36my_handle = scf(100001);clf(my_handle,"reset");
37plot2d([fr;fr;fr]',[20*log10(sm/sm(1));20*log10(res/res(1));20*log10(res1/res1(1))]',[2,1,-1]) 37plot2d([fr;fr;fr]',[20*log10(sm/sm(1));20*log10(res/res(1));20*log10(res1/res1(1))]',[2,1,-1])
38legend([_("Using macro mese");_("Theoritical value");_("Arma identifcation")]) 38legend([_("Using macro mese");_("Theoretical value");_("Arma identification")])
39xtitle(_("Spectral power"),_("frequency"),_("spectral estimate")) 39xtitle(_("Spectral power"),_("frequency"),_("spectral estimate"))
40 40
41halt(); 41halt();
diff --git a/scilab/modules/signal_processing/help/en_US/fft.xml b/scilab/modules/signal_processing/help/en_US/fft.xml
index f2da952..3f90981 100644
--- a/scilab/modules/signal_processing/help/en_US/fft.xml
+++ b/scilab/modules/signal_processing/help/en_US/fft.xml
@@ -159,7 +159,7 @@ N=size(t,'*'); //number of samples
159s=sin(2*%pi*50*t)+sin(2*%pi*70*t+%pi/4)+grand(1,N,'nor',0,1); 159s=sin(2*%pi*50*t)+sin(2*%pi*70*t+%pi/4)+grand(1,N,'nor',0,1);
160 160
161y=fft(s); 161y=fft(s);
162//the fft response is symetric we retain only the first N/2 points 162//the fft response is symmetric we retain only the first N/2 points
163f=sample_rate*(0:(N/2))/N; //associated frequency vector 163f=sample_rate*(0:(N/2))/N; //associated frequency vector
164n=size(f,'*') 164n=size(f,'*')
165clf() 165clf()
diff --git a/scilab/modules/signal_processing/help/en_US/srfaur.xml b/scilab/modules/signal_processing/help/en_US/srfaur.xml
index a93f922..6b86813 100644
--- a/scilab/modules/signal_processing/help/en_US/srfaur.xml
+++ b/scilab/modules/signal_processing/help/en_US/srfaur.xml
@@ -83,7 +83,7 @@ hk=hank(20,20,c);
83r0=c(1:2,1:2); 83r0=c(1:2,1:2);
84[P,s,t,l,Rt,Tt]=srfaur(H,F,G,r0,200); 84[P,s,t,l,Rt,Tt]=srfaur(H,F,G,r0,200);
85 85
86//Make covariance matrix exactly symetric 86//Make covariance matrix exactly symmetric
87Rt=(Rt+Rt')/2 87Rt=(Rt+Rt')/2
88 ]]></programlisting> 88 ]]></programlisting>
89 </refsection> 89 </refsection>