Waveform design of radar coincidence imaging radiation field based on image entropy

Author:

Zhang Qian1ORCID,Zhang Gong1,Chen Ningwei1,Xiong Qing1,Xie Jun1,He Yansen1

Affiliation:

1. College of Electronic and Information Engineering Nanjing University of Aeronautics and Astronautics Nanjing China

Abstract

AbstractRadar coincidence imaging (RCI) is a high‐resolution radar imaging mode which constructs a temporal spatial stochastic radiation field (TSSRF) and uses the correlation between reference signal and echoes for imaging. The correlation between the reference matrix and the echoes is the main factor affecting the imaging performance. In fact, radar target characteristics cause fluctuations in the radar cross section and variations in the scattering intensity of each resolution element. The latter degrades the correlation between the reference matrix and the echoes, seriously affecting the image reconstruction. This paper designs the waveform based on image entropy under fixed transmitting and receiving arrays. The targets with fluctuating scattering intensity at each resolution element are statistically modelled. Simulation results show this approach can improve the imaging performance and reduce the energy dissipation degree of the target grid.

Funder

National Natural Science Foundation of China

Publisher

Institution of Engineering and Technology (IET)

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