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Never apply dynamic phase coeffs. Measure phase response for DX Call and write coeffs, as before. Rx Equalization is still hardwired for K9AN's TS2000.
git-svn-id: svn+ssh://svn.code.sf.net/p/wsjt/wsjt/branches/wsjtx@7501 ab8295b8-cf94-4d9e-aec4-7959e3be5d79
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@ -96,7 +96,7 @@ subroutine mskrtd(id2,nutc0,tsec,ntol,nrxfreq,ndepth,mycall,mygrid,hiscall, &
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fac=1.0/rms
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d(1:NZ)=fac*d(1:NZ)
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d(NZ+1:NFFT1)=0.
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call analytic(d,NZ,NFFT1,cdat,pcoeffs,brxequal,.true.)
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call analytic(d,NZ,NFFT1,cdat,pcoeffs,brxequal,.false.) ! never apply dynamic coeffs
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! Calculate average power for each frame and for the entire block.
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! If decode is successful, largest power will be taken as signal+noise.
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@ -190,9 +190,10 @@ subroutine mskrtd(id2,nutc0,tsec,ntol,nrxfreq,ndepth,mycall,mygrid,hiscall, &
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endif
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decsym=' & '
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if( brxequal .and. (.not. trained) ) decsym=' ^ '
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if( brxequal .and. trained ) decsym=' $ '
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if( (.not. brxequal) .and. trained ) decsym=' @ '
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if( brxequal ) decsym=' ^ '
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! if( brxequal .and. (.not. trained) ) decsym=' ^ '
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! if( brxequal .and. trained ) decsym=' $ '
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! if( (.not. brxequal) .and. trained ) decsym=' @ '
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if( msgreceived(1:1).eq.'<') then
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ncorrected=0
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eyeopening=0.0
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