Files
FAR_CS/Radar simulation/multi target/main.m
T
2024-02-21 16:41:12 +08:00

51 lines
982 B
Matlab

%%
clc;
clear;
config_parameters;
target_num = 2;
range = [250, 140];
velocity = [3e2, 15];
global C_n f_n;
C_n = zeros(target_num, len);
f_n = zeros(target_num, len);
for n_idx = 1:target_num
for t_idx = 1:len
C_n(n_idx, t_idx) = floor(rand * (M - 1));
f_n(n_idx, t_idx) = f_c + C_n(n_idx, t_idx) * Delta_f;
end
end
T_x = zeros(target_num, len);
R_x = zeros(target_num, len);
R_d = zeros(target_num, len);
for n_idx = 1:target_num
for t_idx = 1:len
t = range_t(t_idx);
T_x(n_idx, t_idx) = T_x_func(t);
R_x(n_idx, t_idx) = R_x_func(t, range(n_idx), velocity(n_idx));
R_d(n_idx, t_idx) = R_d_func(t, range(n_idx), velocity(n_idx));
end
end
%%
r = zeros(1, target_num);
range_idx = zeros(1, target_num);
doppler = zeros(1, target_num);
for n_idx = 1:target_num
[r(n_idx), range_idx(n_idx)] = get_range(T_x(n_idx, :), R_x(n_idx, :));
doppler(n_idx) = get_doppler(T_x(n_idx, :), R_d(n_idx, :));
end