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https://github.com/saitohirga/WSJT-X.git
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eedb6d3458
git-svn-id: svn+ssh://svn.code.sf.net/p/wsjt/wsjt/branches/wsjtx@6275 ab8295b8-cf94-4d9e-aec4-7959e3be5d79
135 lines
2.9 KiB
Fortran
135 lines
2.9 KiB
Fortran
program JTMSKsim
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use wavhdr
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parameter (NSPM=1404)
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parameter (NFFT=256*1024)
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parameter (NMAX=15*12000)
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type(hdr) h
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complex cb11(0:NSPM-1)
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complex cmsg(0:NSPM-1)
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complex c(0:NFFT-1)
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complex c1(0:NSPM-1)
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complex c2(0:NSPM-1)
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integer i4tone(NSPM)
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integer*2 iwave(NMAX)
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real w(0:255)
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character*8 arg
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nargs=iargc()
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if(nargs.ne.2) then
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print*,'Usage: JTMSK freq dB'
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go to 999
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endif
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call getarg(1,arg)
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read(arg,*) fmid
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call getarg(2,arg)
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read(arg,*) snrdb
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open(10,file='JTMSKcode.out',status='old')
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do j=1,234
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read(10,*) junk,i4tone(j)
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enddo
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close(10)
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npts=NMAX
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h=default_header(12000,npts)
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twopi=8.0*atan(1.0)
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dt=1.0/12000.0
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df=12000.0/NFFT
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k=-1
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phi=0.
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phi0=0.
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sig=10.0**(0.05*snrdb)
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call init_random_seed() ! seed Fortran RANDOM_NUMBER generator
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call sgran() ! see C rand generator (used in gran)
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! Generate the Tx waveform
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cb11=0.
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do j=1,234
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dphi=twopi*(fmid-500.0)*dt
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if(i4tone(j).eq.1) dphi=twopi*(fmid+500.0)*dt
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dphi0=twopi*1000.0*dt
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if(i4tone(j).eq.1) dphi0=twopi*2000.0*dt
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do i=1,6
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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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cmsg(k)=cmplx(cos(phi),sin(phi))
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phi0=phi0+dphi0
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if(phi0.gt.twopi) phi0=phi0-twopi
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! if((k.ge.1 .and. k.le.66) .or. (k.ge.283 .and. k.le.348) .or. &
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! (k.ge.769 .and.k.le.834)) cb11(k)=cmplx(cos(phi0),sin(phi0))
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if(k.ge.1 .and. k.le.66) cb11(k)=cmplx(cos(phi0),sin(phi0))
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! write(11,3001) k*dt,cmsg(k),phi
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!3001 format(4f12.6)
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enddo
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enddo
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! Generate noise with B=2500 Hz, rms=1.0
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c=0.
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ia=nint(250.0/df)
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ib=nint(2759.0/df)
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do i=ia,ib
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x=gran()
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y=gran()
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c(i)=cmplx(x,y)
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enddo
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call four2a(c,NFFT,1,1,1)
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sq=0.
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do i=0,npts-1
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sq=sq + real(c(i))**2 + aimag(c(i))**2
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enddo
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rms=sqrt(0.5*sq/npts)
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c=c/rms
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i0=3*12000
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ncopy=NSPM
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! ncopy=0.5*NSPM
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c(i0:i0+ncopy-1)=c(i0:i0+ncopy-1) + sig*cmsg(0:ncopy-1)
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do i=1,npts
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iwave(i)=100.0*real(c(i))
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enddo
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open(12,file='150901_000000.wav',status='unknown',access='stream')
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write(12) h,iwave(1:npts)
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smax=0.
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fpk=0.
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jpk=0
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nfft1=256
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w=0.
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do i=0,65
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w(i)=sin(i*twopi/132.0)
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enddo
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do ia=0,npts-nfft1
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c1(0:nfft1-1)=c(ia:ia+nfft1-1)*conjg(cb11(0:nfft1-1))
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c2(0:nfft1-1)=w(0:nfft1-1)*c1(0:nfft1-1)
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call four2a(c2,nfft1,1,-1,1)
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do i=0,nfft1-1
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! write(21,1100) i,c1(i)
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!1100 format(i6,2f12.3)
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enddo
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df1=12000.0/nfft1
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do i=-20,20
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j=i
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if(i.lt.0) j=j+nfft1
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f=j*df1
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if(i.lt.0) f=f-12000.0
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s=1.e-3*(real(c2(j))**2 + aimag(c2(j))**2)
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if(abs(ia-i0).lt.1404) write(22,1110) f,c2(j),s,ia
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1110 format(4f12.3,i6)
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if(s.gt.smax) then
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smax=s
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jpk=ia
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fpk=f
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endif
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enddo
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enddo
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print*,smax,jpk*dt,fpk
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999 end program JTMSKsim
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