- fdet.m pass Xm
- fdet_coarse.m use alternative approach - fdet_wav.m added simple symbol decoding git-svn-id: http://moon:8086/svn/matlab/trunk@28 801c6759-fa7c-4059-a304-17956f83a07c
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+2
-2
@@ -1,10 +1,10 @@
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function [omega, err, dmod, omega_coarse, omega_est] = fdet(x, N, Ng, off, omega_min, omega_step, omega_max)
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function [omega, err, dmod, omega_coarse, omega_est, Xm] = fdet(x, N, Ng, off, omega_min, omega_step, omega_max)
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%
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K = fix((length(x)-Ng)/(N+Ng));
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% Initial guess
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omega_coarse = fdet_coarse(x, N, omega_min, omega_step, omega_max);
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[omega_coarse, Xm] = fdet_coarse(x, N, Ng, omega_min, omega_step, omega_max);
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phi_est = 0;
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omega_est = omega_coarse;
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+20
-1
@@ -1,5 +1,23 @@
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function omega_coarse = fdet_coarse(x, N, omega_min, omega_step, omega_max)
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function [omega_coarse, Xm] = fdet_coarse(x, N, Ng, omega_min, omega_step, omega_max)
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Xm = zeros(N,1);
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if 0
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K = fix((length(x))/(N+Ng));
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for k=1:K,
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xp = x((k-1)*(N+Ng)+1:k*(N+Ng));
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Xm = 0.5*Xm + fft(xp(Ng+1:N+Ng), N);
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end
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Nmax = ceil(omega_max*N)+1
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[v, ii] = max(abs(Xm(1:Nmax)))
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omega_coarse = (ii-1)/N;
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else
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omega_range = (omega_min:omega_step:omega_max);
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for k=1:lge(omega_range)
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@@ -9,3 +27,4 @@ end;
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[v maxk] = max(abs(dmod));
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omega_coarse = omega_range(maxk);
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end
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+17
-2
@@ -42,16 +42,30 @@ cp_off = mod(ii, Ng+N)
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% Detect CFO
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fprintf('Perform frequency detection\n');
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[omega, err, dmod, omega_coarse, omega_est] = fdet(x, N, Ng, cp_off, omega_min, omega_step, omega_max);
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[omega, err, dmod, omega_coarse, omega_est, Xm] = fdet(x, N, Ng, cp_off, omega_min, omega_step, omega_max);
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f_coarse = omega_coarse*fs
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f_est = omega_est*fs
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fprintf('Receive Symbols\n');
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K = fix((length(x)-Ng)/(N+Ng));
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for k=10:30
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xp = x((k-1)*(N+Ng)+cp_off+1:k*(N+Ng)+cp_off);
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Xp(:,k) = fft(xp(Ng+1:N+Ng), N);
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end;
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close all;
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plot(abs(c)); grid;
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figure;
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bin = fix(N*750/48000)+1
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plot(real(Xp(bin, :)), imag(Xp(bin, :)), '+'); grid;
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figure;
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plot(0:N-1, abs(Xm)); grid;
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figure;
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subplot(5,1,1)
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plot(1:lge(omega), real(dmod)/N, 1:lge(omega), imag(dmod)/N, 1:lge(omega), abs(dmod)/N); grid; legend('Re', 'Im', 'abs()');
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@@ -65,4 +79,5 @@ subplot(5,1,4)
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plot(1:lge(omega), angle(dmod), '-', 1:lge(omega), diff(angle([0 dmod])), 'r-'); grid; legend('phi', 'dphi');
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subplot(5,1,5)
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plot(1:lge(omega), abs(dmod)/N - real(dmod)/N, '-'); grid; legend('diff');
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plot(1:lge(omega), log10(abs(dmod) ./ (1E-6+abs(real(dmod)))), '-'); grid; legend('diff');
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