Files
2024-05-09 16:54:58 +08:00

323 lines
8.5 KiB
Matlab

clc
clear
close all;
%% 蜿よ焚隶セ鄂ョ
B = 5e6; % 菫。蜿キ蟶ヲ�??5MHz
Tp = 20e-6; % 閼牙??100us
fs = 2 * B; % 驥��キ鬚醍紫
Ts = 1 / fs; % 驥��キ蜻ィ譛�
K = B / Tp; % 郤ソ諤ァ隹�「醍紫
fc = 1.25e9; % 霓ス豕「鬚醍紫1.25GHz
PRF = 5000; % 閼牙�驥榊?埼?醍紫
Tr = 1 / PRF; % 閼牙�驥榊?埼龍髫?
numP = 64; % 閼牙�謨ー驥�
t = 0: 1 / fs: Tr - 1 / fs;
tP = 0: 1 / fs: Tr * numP - 1 / fs;
c = 3e8; % 蜈蛾€?
slow_len = 128;
%%
sigma_n = 0.1;
alpha_prop = 0.8;
% SNR = -30;
SNR = [-5,0,5,8,10,12,15,20,25];
len_SNR = length(SNR);
P_fa = [1e-4, 5e-4, 1e-3, 5e-3, 1e-2, 5e-2, 1e-1, 5e-1, 1];
len_P_fa = length(P_fa);
rep_time = 200;
% rou >= c / 2B = 15(m)
%%
delta_VAMP = 1e-6;
iter_max = 1000;
lambda_val = 0.05;
lambda = zeros(slow_len,1) + lambda_val;
%% 莠ァ逕溷書蟆�ソ。蜿キ
N = Tr * fs;
N_high = Tp * fs;
signal_t = zeros(1, N * numP);
for j = 1: numP
for i = 1: N_high
tp = ((j - 1) * N + i) * (1 / fs);
signal_t(1, i + (j-1)*N) = exp(1j * 2 * pi * (fc * tp + 0.5 * K * tp .^ 2));
end
end
multiple_r = signal_t(1, 1: N) * signal_t(1, 1: N)';
% figure(1);
% subplot(311)
% plot(tP,real(signal_t));
% xlabel('譌カ髣エ/t');ylabel('蟷�コヲ');
% title('蜿大ー�ソ。蜿キ');
%% 隶セ鄂ョ逶?譬? 1
distance1 = 18000;
v1 = 187.5;
tau1 = distance1 * 2 / c;
n_tau1 = round(tau1 * fs);
f_d1 = 2 * fc * v1 / c;
alpha1 = alpha_prop;
% alpha1 = 0;
signal_r1 = zeros(1, N * numP);
for j = 1: numP
for i = 1: N
temp = i - n_tau1;
if temp >= 1 && temp <= N_high
tp = ((j - 1) * N + i - n_tau1) * (1 / fs);
signal_r1(1, i + (j-1)*N) = alpha1 * exp(1j*2*pi*((fc - f_d1) * tp + 0.5 * K * tp .^ 2));
end
end
end
%% 逕滓�蝗樊ウ「
signal_r = signal_r1;
% figure(1);
% subplot(312)
% plot(tP, real(signal_r));
% xlabel('譌カ髣エ/t');
% ylabel('蟷�コヲ');
% title('蝗樊ウ「菫。蜿キ');
%%
P_fa_CROD_cnt = zeros(len_SNR, len_P_fa, rep_time);
P_d_CROD_cnt = zeros(len_SNR, len_P_fa, rep_time);
F_ori = dftmtx(slow_len);
F = F_ori(1:numP,:);
multiple_d = F(:,1)' * F(:,1);
F_inv = conj(F)/slow_len;
A = (sqrt(slow_len) * eye(numP)) * F_inv;
n = slow_len;
m = numP;
gamma = numP / slow_len;
parfor rep = 1: rep_time
% for rep = 1: rep_time
for cnt_SNR = 1: len_SNR
%% 蝎?螢ー�?�炊
noise = random('Normal', 0, sigma_n/sqrt(2), 1, N * numP) + 1j * random('Normal', 0, sigma_n/sqrt(2), 1, N * numP);
alpha_SNR = sqrt(10^(SNR(cnt_SNR)/10) * sigma_n^2 / (multiple_r * multiple_d));
signal_r_n = signal_r * alpha_SNR + noise;
% figure(1);
% subplot(313)
% plot(tP, real(signal_r_n));
% xlabel('譌カ髣エ/t');
% ylabel('蟷�コヲ');
% title('蝗樊ウ「+蝎?螢ー菫。蜿?');
%% 蛹ケ驟肴サ、豕「窶披€疲潔Tr蛻貞�
Srange = zeros(N, numP);
% A = generate_matrix(transpose(signal_t(1, 1: N)), 1);
count_fa=0;
for i = 1: numP
sr = signal_r_n(1, 1 + (i - 1) * N: i * N);
st = signal_t(1, 1 + (i - 1) * N: i * N);
% A = generate_matrix(transpose(st), 1);
% mf = A' * transpose(sr);
% filterred_rf_r = mf ./ multiple_r;
% 蛹ケ驟肴サ、豕「
rf_r_fft_conj = conj(fft(st));
filterred_rf_r = ifft(fft(sr) .* rf_r_fft_conj);
filterred_rf_r = filterred_rf_r ./ multiple_r;
Srange(:,i) = filterred_rf_r';
end
% figure(101)
% mesh(abs(Srange))
% title('謖欝r霑幄?悟源驟肴サ、豕「扈捺�?')
%% R蛹ケ驟肴サ、豕「窶披€泌�蟶�ェ瑚ッ?
% Before MF
% a+bi
% a~N(0,sigma_n^2 / 2)
% b~N(0,sigma_n^2 / 2)
% After MF
% a+bi
% a~N(0,sigma_n^2 / 2 / multiple_r)
% b~N(0,sigma_n^2 / 2 / multiple_r)
% a^2 + b^2 ~ chi^2(2) * sigma_n^2 / 2 / multiple_r
% stat_R = abs(Srange).^2;
% P_fa = 0.1;
% kd = sigma_n^2 * chi2inv(1 - P_fa, 2) / 2 / multiple;
% sum(sum(stat_R>kd))/numel(stat_R)
%% 螟壽勸蜍呈サ、豕?
Srd = zeros(N, slow_len);
count_Pfa_d = zeros(length(P_fa), N);
count_Pd_d = zeros(length(P_fa), 1);
target_node_d = round(v1 / (c / fc * PRF / 2 / slow_len)) + 1;
target_node_r = n_tau1 + 1;
% for i = 1: N
for i = target_node_r-N_high: target_node_r+N_high
x_slow = Srange(i, :);
y = (sqrt(slow_len) * eye(numP)) * transpose(x_slow);
[x_LASSO,y_d] = cVAMPro(y,A,lambda,delta_VAMP,iter_max);
% CROD豎ょ悉蛛?
rho_active = sum(abs(x_LASSO) > 1e-3)/n;
Q_hat = (gamma - rho_active)/(1 - rho_active);
Rho = sum((abs(x_LASSO) > 1e-3).* (2 - lambda./(Q_hat*abs(x_LASSO) + lambda))) / 2 / n;
diff = 1;
while(diff > 1e-4)
Rho_pre = Rho;
Rho = sum((abs(x_LASSO) > 1e-3).* (2 - lambda./((gamma-Rho)/(1-Rho)*abs(x_LASSO) + lambda))) / 2 / n;
diff = abs(Rho - Rho_pre);
end
Q_hat = (gamma-Rho)/(1-Rho);
x_d_CROD = x_LASSO + A'*(y - A*x_LASSO)/Q_hat;
% CROD豎る葎髯仙柱譽€鬪檎サ溯ョ。驥�
RSS = sum(abs(y - A * x_LASSO).^2)/m;
chi = Rho*(1 - Rho)/(gamma - Rho);
if chi ~= 0
chi_temp = sqrt((chi+1)*(chi+1)-4*gamma*chi);
z = -(1 - chi + chi_temp) / (2*chi);
z_prime = -(1 - 2*gamma*chi + chi + chi_temp) / (2*chi*chi*chi_temp);
G_prime = (z + 1/chi);
G_wprime = (z_prime + 1/chi/chi);
chi_hat = gamma/2*G_wprime*RSS/(G_prime - chi*G_wprime)...
+ (G_prime*G_prime/2 - gamma/2*G_wprime)*sigma_n*sigma_n/(G_prime - chi*G_wprime);
else
G_prime = gamma;
G_wprime = gamma*(1-gamma);
chi_hat = gamma/2*G_wprime*RSS/(G_prime - chi*G_wprime)...
+ (G_prime*G_prime/2 - gamma/2*G_wprime)*sigma_n*sigma_n/(G_prime - chi*G_wprime);
end
sigma_CROD = sqrt(2*chi_hat) / Q_hat;
sigma_CROD = sigma_CROD*0.895;
stat_CROD = abs(x_d_CROD / sigma_CROD).^2;
h_thd = chi2inv(1 - P_fa, 2) / 2;
% 譽€豬?
for j = 1:length(P_fa)
if i ~= target_node_r
count_Pfa_d(j,i) = sum(stat_CROD > h_thd(j)) / slow_len;
else
stat_index = ones(size(stat_CROD));
stat_index(target_node_d) = 0;
count_Pfa_d(j,i) = sum(stat_CROD(stat_index > 0) > h_thd(j)) / sum(stat_index);
count_Pd_d(j) = stat_CROD(target_node_d) > h_thd(j);
end
end
Srd(i, :) = fftshift(transpose(x_d_CROD ./ multiple_d ./ 2));
end
target_near_count = count_Pfa_d(:,target_node_r-N_high: target_node_r+N_high);
% P_fa_actual = mean(count_Pfa_d,2);
P_fa_actual = mean(target_near_count,2);
for cnt_h_th = 1: len_P_fa
P_fa_CROD_cnt(cnt_SNR, cnt_h_th, rep) = P_fa_actual(cnt_h_th);
P_d_CROD_cnt(cnt_SNR, cnt_h_th, rep) = count_Pd_d(cnt_h_th);
end
end
fprintf('%d\n', rep);
end
P_fa_CROD = mean(P_fa_CROD_cnt, 3);
P_d_CROD = mean(P_d_CROD_cnt, 3);
%% plot
figure(1);
loglog(P_fa,P_fa_CROD(1,:), 'linewidth', 2);
% hold on;
% grid on;
% loglog(P_fa,P_fa_MF(2,:), 'linewidth', 2);
% loglog(P_fa,P_fa_MF(3,:), 'linewidth', 2);
% loglog(P_fa,P_fa_MF(4,:), 'linewidth', 2);
% loglog(P_fa,P_fa_MF(5,:), 'linewidth', 2);
% loglog(P_fa,P_fa_MF(6,:), 'linewidth', 2);
% legend('SNR = 0','SNR = 2','SNR = 4','SNR = 6','SNR = 8','SNR = 10');
xlabel('P_fa');
ylabel('Actual P_fa');
figure(2);
semilogx(P_fa,P_d_CROD(1,:), 'linewidth', 2);
% hold on;
% grid on;
% semilogx(P_fa,P_d_MF(2,:), 'linewidth', 2);
% semilogx(P_fa,P_d_MF(3,:), 'linewidth', 2);
% semilogx(P_fa,P_d_MF(4,:), 'linewidth', 2);
% semilogx(P_fa,P_d_MF(5,:), 'linewidth', 2);
% semilogx(P_fa,P_d_MF(6,:), 'linewidth', 2);
% legend('SNR = 0','SNR = 2','SNR = 4','SNR = 6','SNR = 8','SNR = 10');
xlabel('P_fa');
ylabel('P_d');
% save test_Rmf_Dmf.mat ...
% distance_temp...
% speed_temp...
% Srd...
% Srange...
% tP...
% signal_t...
% signal_r...
% signal_r_n...
% F...
% slow_len;
save test_MC_Pfa_Rmf_Dcs.mat ...
SNR...
P_fa...
P_fa_CROD...
P_d_CROD...
sigma_n...
B...
Tp...
fs...
Ts...
K...
fc...
PRF...
Tr...
numP...
t...
tP...
slow_len;