TY - JOUR
T1 - Efficient Wavenumber Domain Imaging Approach for Boundary Subarray-Based Multiplane MIMO Array
AU - Xing, Guangnan
AU - Wang, Yikun
AU - Li, Shiyong
AU - Yao, Xianxun
AU - Wang, Shuoguang
AU - Ren, Bailing
AU - Hu, Bing
AU - Zhao, Guoqiang
AU - Sun, Houjun
N1 - Publisher Copyright:
© 1965-2011 IEEE.
PY - 2026
Y1 - 2026
N2 - In this article, an efficient wavenumber-domain algorithm is developed for the millimeter-wave imaging scheme with boundary subarray (BSA)-based multiplane multiple-input-multiple-output (MIMO) arrays. Compared to the conventional planar MIMO arrays, the BSA-based multiplane MIMO arrays exhibit superior detection performance of targets. Moreover, the data amount of BSA-based multiplane MIMO arrays can be greatly reduced by restricting the transmit-receive signal channels within each BSA. To enhance the imaging efficiency of this scheme, we formulate a data transformation from each BSA of the multiplane MIMO system to the cylindrical monostatic array (CMA), thereby avoiding the high-dimensional processing and offering an efficient solution for nonuniformly sampled signal processing. Based on the analysis of the error induced by BSA-to-CMA transformations, the independent phase calibration is performed for each BSA, mitigating the degradation of image quality. Simulations and experimental results validate the fast imaging and high-resolution advantages of the proposed approach.
AB - In this article, an efficient wavenumber-domain algorithm is developed for the millimeter-wave imaging scheme with boundary subarray (BSA)-based multiplane multiple-input-multiple-output (MIMO) arrays. Compared to the conventional planar MIMO arrays, the BSA-based multiplane MIMO arrays exhibit superior detection performance of targets. Moreover, the data amount of BSA-based multiplane MIMO arrays can be greatly reduced by restricting the transmit-receive signal channels within each BSA. To enhance the imaging efficiency of this scheme, we formulate a data transformation from each BSA of the multiplane MIMO system to the cylindrical monostatic array (CMA), thereby avoiding the high-dimensional processing and offering an efficient solution for nonuniformly sampled signal processing. Based on the analysis of the error induced by BSA-to-CMA transformations, the independent phase calibration is performed for each BSA, mitigating the degradation of image quality. Simulations and experimental results validate the fast imaging and high-resolution advantages of the proposed approach.
KW - Boundary subarray (BSA)
KW - millimeter-wave (MMW) imaging
KW - multiplane array
KW - multiple-input-multiple-output (MIMO)
UR - https://www.scopus.com/pages/publications/105019550720
U2 - 10.1109/TAES.2025.3620793
DO - 10.1109/TAES.2025.3620793
M3 - Article
AN - SCOPUS:105019550720
SN - 0018-9251
VL - 62
SP - 129
EP - 141
JO - IEEE Transactions on Aerospace and Electronic Systems
JF - IEEE Transactions on Aerospace and Electronic Systems
ER -