function [esti_ang_deg, P_FT, fft_ang_elev_deg, fft_ang_azi_deg] = df_FFT_mar510(zp_snapshot, NFFT_elev, NFFT_azi, fft_ang_elev_deg, fft_ang_azi_deg, array_struct, Ntarget) %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%% % % Conventioanl Beamforming algorithm for df % Start : 23.08.25 % End : 23.08.25 % developed by Kwanggoo Yeo % % Description % - Input % - 1) snapshot [matrix], [-] : raw data(snapshot) for df % - 2) test_ang_elev_deg [vector], [deg] : elevation angle grid for beamforming % - 3) test_ang_azi_deg [vector], [deg] : Azimuth angle grid for beamforming % - 4) lambda_c [scalar], [m] : wavelength of center frequency % - 4) array_struct [struct], [-] : Structure containing virtual array information % - 5) Ntarget [scalar], [-] : The number of targets in snapshot % % - Output % - 1) esti_ang_deg [matrix], [deg] : The estimated angles by CBF % - 2) P_CBF [matrix], [linear] : power spectrum of CBF % % History % (23.08.25) Completed % % Referece % - % %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%% temp_Nsnap = size(zp_snapshot); Nsnap = temp_Nsnap(end); if isempty(fft_ang_elev_deg) fft_elev_freq = -180 : 360/NFFT_elev : (180 - 360/NFFT_elev); fft_ang_elev_deg = asind(fft_elev_freq / 2 * array_struct.lambda_c / array_struct.d_unit_elev / 180); end if isempty(fft_ang_azi_deg) fft_azi_freq = -180 : 360/NFFT_azi : (180 - 360/NFFT_azi); fft_ang_azi_deg = asind(fft_azi_freq / 2 * array_struct.lambda_c / array_struct.d_unit_azi / 180); end % FFT spectrum if Nsnap == 1 P_FT = abs((((1/Nsnap) * ((fft(zero_padded_input, NFFT_azi)))').')).^2; else P_FT = abs((fftshift((1/Nsnap) * (sum(fft(zero_padded_input, NFFT_azi),2))').')).^2; end [pks, pks_ang, ~, ~] = findpeaks(pow2db(abs(P_FT_2D)), fft_ang_deg); [~, order] = sort(pks, 'descend'); if isempty(pks) esti_ang_deg = nan; else esti_ang_deg = pks_ang(order(1:Ntarget)); end end