Files
matlab/ofdm/calcWiener.m
T
jens c5c6c37848 - fixed jitter in H estimation
- consider power boost in params
- RX: cleaned up
- TX: cleaned up


git-svn-id: http://moon:8086/svn/matlab/trunk@44 801c6759-fa7c-4059-a304-17956f83a07c
2015-04-30 06:21:22 +00:00

50 lines
1.7 KiB
Matlab

function W_syms = calcWiener(drm_mode, drm_bw)
% calcWiener('B', '10k');
[params, spec_occ] = drm_params(drm_mode, drm_bw);
N = params.nu
sigm = 10^(-14/10);
frames_per_window = 2*params.y
window_delay = params.y
num_symbols_per_frame = params.nspf
num_carrier_per_symbol = spec_occ.kmax - spec_occ.kmin
num_symbols_per_frame = num_symbols_per_frame * num_carrier_per_symbol
% PHI = auto-covariance-matrix
f_cut_t = 0.0675*1/window_delay; % two-sided maximum doppler frequency (normalized w.r.t symbol duration Ts)
f_cut_k = 1.75*params.ng/params.nu; % two-sided maximum echo delay (normalized w.r.t useful symbol duration Tu)
W_syms = cell( params.y, 1 );
for d=0:window_delay-1
k2_pos = [];
t2_pos = [];
for s=0:frames_per_window-1
[c, p, a] = getRefGain(params, spec_occ, s+d);
k2_pos = [k2_pos c]; % length = window_delay*frames_per_window
t2_pos = [t2_pos ones(1, length(c))*(s)]; % length = window_delay*frames_per_window
end
PHI = zeros(length(k2_pos));
% PHI
for k1=1:length(k2_pos)
k2 = [1:length(k2_pos)];
k1_pos = k2_pos(k1);
t1_pos = t2_pos(k1);
PHI(k1,k2) = sinc(f_cut_k*(k1_pos-k2_pos)) .* sinc(f_cut_t*(t1_pos-t2_pos));
end
PHI_inv = inv(PHI + eye(length(PHI))*sigm);
THETA = zeros(1, length(k2_pos));
% THETA
carriers = spec_occ.kmin:spec_occ.kmax;
for k1=1:length(carriers)
k2 = [1:length(k2_pos)];
k1_pos = carriers(k1);
t1_pos = window_delay;
THETA(k2) = sinc(f_cut_k*(k1_pos-k2_pos)) .* sinc(f_cut_t*(t1_pos-t2_pos));
W_syms{d+1}(:, k1) = transpose( THETA*PHI_inv );
end
end
W_syms