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ft8sim.f90 can now generate 25 independently-fading signals.
git-svn-id: svn+ssh://svn.code.sf.net/p/wsjt/wsjt/branches/wsjtx@7869 ab8295b8-cf94-4d9e-aec4-7959e3be5d79
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@ -6,7 +6,7 @@ program ft8sim
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use wavhdr
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include 'ft8_params.f90' !Set various constants
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type(hdr) h !Header for .wav file
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character arg*12,fname*17
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character arg*12,fname*17,sorm*1
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character msg*22,msgsent*22
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complex c0(0:NMAX-1)
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complex c(0:NMAX-1)
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@ -16,21 +16,36 @@ program ft8sim
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! Get command-line argument(s)
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nargs=iargc()
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if(nargs.ne.6) then
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print*,'Usage: ft8sim "message" DT fdop del nfiles snr'
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print*,'Example: ft8sim "K1ABC W9XYZ EN37" 0.0 0.1 1.0 10 -18'
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if(nargs.ne.8) then
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print*,'Usage: ft8sim "message" sorm f0 DT fdop del nfiles snr'
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print*,'Example: ft8sim "K1ABC W9XYZ EN37" m 1500.0 0.0 0.1 1.0 10 -18'
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print*,'sorm: "s" for single signal at 1500 Hz, "m" for 25 signals'
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print*,'f0 is ignored when sorm = m'
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go to 999
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endif
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call getarg(1,msg) !Message to be transmitted
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call getarg(2,arg)
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read(arg,*) xdt !Time offset from nominal (s)
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call getarg(2,sorm) !s for single signal, m for multiple sigs
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if(sorm.eq."s") then
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print*,"Generating single signal at 1500 Hz."
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nsig=1
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elseif( sorm.eq."m") then
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print*,"Generating 25 signals per file."
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nsig=25
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else
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print*,"sorm parameter must be s (single) or m (multiple)."
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goto 999
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endif
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call getarg(3,arg)
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read(arg,*) fspread !Watterson frequency spread (Hz)
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read(arg,*) f0 !Frequency (only used for single-signal)
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call getarg(4,arg)
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read(arg,*) delay !Watterson delay (ms)
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read(arg,*) xdt !Time offset from nominal (s)
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call getarg(5,arg)
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read(arg,*) nfiles !Number of files
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read(arg,*) fspread !Watterson frequency spread (Hz)
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call getarg(6,arg)
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read(arg,*) delay !Watterson delay (ms)
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call getarg(7,arg)
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read(arg,*) nfiles !Number of files
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call getarg(8,arg)
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read(arg,*) snrdb !SNR_2500
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twopi=8.0*atan(1.0)
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@ -56,28 +71,27 @@ write(*,'(3i1)') msgbits(73:75)
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write(*,'(12i1)') msgbits(76:87)
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! call sgran()
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c=0.
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do ifile=1,nfiles
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c0=0.
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do isig=1,25
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f0=(isig+2)*100.0
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c=0.
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do isig=1,nsig
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c0=0.
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if(nsig.eq.25) then
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f0=(isig+2)*100.0
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endif
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k=-1 + nint((xdt+0.5+0.01*gran())/dt)
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! k=-1 + nint((xdt+0.5)/dt)
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phi=0.0
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k=-1 + nint(xdt+0.5/dt)
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do j=1,NN !Generate complex waveform
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dphi=twopi*(f0+itone(j)*baud)*dt
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if(k.eq.0) phi=-dphi
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do i=1,NSPS
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k=k+1
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phi=phi+dphi
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if(phi.gt.twopi) phi=phi-twopi
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xphi=phi
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if(k.ge.0 .and. k.lt.NMAX) c0(k)=cmplx(cos(xphi),sin(xphi))
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phi=mod(phi+dphi,twopi)
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if(k.ge.0 .and. k.lt.NMAX) c0(k)=cmplx(cos(phi),sin(phi))
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enddo
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enddo
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if(fspread.ne.0.0 .or. delay.ne.0.0) call watterson(c,NMAX,fs,delay,fspread)
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c=c+c0
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if(fspread.ne.0.0 .or. delay.ne.0.0) call watterson(c0,NMAX,fs,delay,fspread)
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c=c+sig*c0
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enddo
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c=c*sig
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if(snrdb.lt.90) then
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do i=0,NMAX-1 !Add gaussian noise at specified SNR
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xnoise=gran()
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