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https://github.com/saitohirga/WSJT-X.git
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6de67f32b1
git-svn-id: svn+ssh://svn.code.sf.net/p/wsjt/wsjt/branches/wsjtx@4225 ab8295b8-cf94-4d9e-aec4-7959e3be5d79
94 lines
2.7 KiB
Fortran
94 lines
2.7 KiB
Fortran
subroutine jt65a(dd0,npts,newdat,nutc,nf1,nf2,nfqso,ntol,nagain,ndecoded)
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! Process dd() data to find and decode JT65 signals.
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parameter (NSZ=3413)
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parameter (NZMAX=60*12000)
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parameter (NFFT=8192)
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real dd0(NZMAX)
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real dd(NZMAX)
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real*4 ss(322,NSZ)
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real*4 savg(NSZ)
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logical done(NSZ)
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real a(5)
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character decoded*22
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save
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dd=0.
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tskip=2.0
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nskip=12000*tskip
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dd(1+nskip:npts+nskip)=dd0(1:npts)
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npts=npts+nskip
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if(newdat.ne.0) then
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call timer('symsp65 ',0)
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call symspec65(dd,npts,ss,nhsym,savg) !Get normalized symbol spectra
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call timer('symsp65 ',1)
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endif
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df=12000.0/NFFT !df = 12000.0/16384 = 0.732 Hz
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ftol=16.0 !Frequency tolerance (Hz)
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mode65=1 !Decoding JT65A only, for now.
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done=.false.
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freq0=-999.
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do nqd=1,0,-1
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if(nqd.eq.1) then !Quick decode, at fQSO
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fa=nfqso - ntol
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fb=nfqso + ntol
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else !Wideband decode at all freqs
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fa=nf1
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fb=nf2
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endif
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ia=max(51,nint(fa/df))
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ib=min(NSZ-51,nint(fb/df))
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thresh0=1.5
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do i=ia,ib !Search over freq range
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freq=i*df
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if(savg(i).lt.thresh0 .or. done(i)) cycle
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call timer('ccf65 ',0)
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call ccf65(ss(1,i),nhsym,savg(i),sync1,dt,flipk,syncshort,snr2,dt2)
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call timer('ccf65 ',1)
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ftest=abs(freq-freq0)
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thresh1=1.0
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if(nqd.eq.1 .and. ntol.le.100) thresh1=0.
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if(sync1.lt.thresh1 .or. ftest.lt.ftol) cycle
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nflip=nint(flipk)
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call timer('decod65a',0)
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call decode65a(dd,npts,newdat,freq,nflip,mode65,sync2,a,dt, &
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nbmkv,nhist,decoded)
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call timer('decod65a',1)
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ftest=abs(freq+a(1)-freq0)
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if(ftest.lt.ftol) cycle
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if(decoded.ne.' ') then
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ndecoded=1
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nfreq=nint(freq+a(1))
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ndrift=nint(2.0*a(2))
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s2db=10.0*log10(sync2) - 32 !### empirical (was 40) ###
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nsnr=nint(s2db)
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if(nsnr.lt.-30) nsnr=-30
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if(nsnr.gt.-1) nsnr=-1
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dt=dt-tskip
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write(*,1010) nutc,nsnr,dt,nfreq,decoded
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1010 format(i4.4,i4,f5.1,i5,1x,'#',1x,a22)
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write(13,1012) nutc,nint(sync1),nsnr,dt,float(nfreq),ndrift, &
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decoded,nbmkv
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1012 format(i4.4,i4,i5,f6.1,f8.0,i4,3x,a22,' JT65',i4)
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freq0=freq+a(1)
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i2=min(NSZ,i+15) !### ??? ###
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done(i:i2)=.true.
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endif
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enddo
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if(nagain.eq.1) exit
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enddo
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return
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end subroutine jt65a
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