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This project proposes sparse billboard and T-shaped arrays. This project also derives closed-form expressions for the sensor locations and the number of consecutive lags or the uniform degrees of freedom (uDOF), in the fourth-order difference coarray (FODC).
alawsh21/Sparse-Billboard-and-T-Shaped-Arrays-for-Two-Dimensional-Direction-of-Arrival-Estimation
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%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%% Readme %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%% % This file is used to explain the purpose of all functions in the Folder % %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%% % There six functions to generate every array structure % % Three for Billboard & Three for T-shaped % % Two more functions to generate the underlaying 1D super nested array % % The function URA_segment, supplemented with small_ura, is used to find the uDOF % %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%% % When running the code "Derive_Lc_Lu_vs_N" % % The user could select the intended 2D array % % Select the number of elements using either: % A predefined range of elements, % User defined range, % Random numbers % The software will simulate the selected array with the selected number of % elements, simulate the uDOF, calculate the uDOF based on Table II % % Plot the simulated and the analytical expressions for uDOF % % Plot the FODC % Draw a rectangle on the uDOF of the last N % The code also calculate the % Number of unique lags in the FODC % Aperture size as per Table III %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%% % For 2D-DOA Estimation, you need just to % Extract the uDOF % Extract the corresponding measurements % Do spatial smoothing % Perform the estimation
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This project proposes sparse billboard and T-shaped arrays. This project also derives closed-form expressions for the sensor locations and the number of consecutive lags or the uniform degrees of freedom (uDOF), in the fourth-order difference coarray (FODC).
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