4.7 Article

A Novel Iterative Inner-Pulse Integration Target Detection Method for Bistatic Radar

出版社

IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
DOI: 10.1109/TGRS.2022.3186012

关键词

Bistatic radar; Spaceborne radar; Radar; Matched filters; Doppler effect; Transmitters; Object detection; Coherent integration; high-speed target detection; inner-pulse Doppler compensation; precise echo signal (PES) model; space-air-based bistatic radar

资金

  1. National Natural Science Foundation of China [61971329]

向作者/读者索取更多资源

A large time-bandwidth product bistatic radar is advantageous for high-resolution target detection and motion parameter estimation, but it introduces scale factor and inner-pulse Doppler in radar echoes when detecting high-speed targets. This paper proposes an iterative coherent integration method based on a precise echo signal model to achieve accurate motion parameter estimation and target detection in a space-air-based bistatic radar system.
A large time-bandwidth product bistatic radar offers several advantages in high-resolution target detection and motion parameter estimation, but the scale factor and inner-pulse Doppler will also be introduced in the radar echoes when detecting high-speed targets. Under this condition, the conventional matched filter will cause a certain energy loss and a nonnegligible shift of the range center, which is called mismatch effect. Considering the special geometries of the bistatic radar, we first establish the precise echo signal (PES) model to describe the radar echoes for high-speed targets in a space-air-based bistatic radar system. By analyzing the mismatch effect within the pulse and the migration between pulses, we have obtained the mathematic relationship between the scale factor, inner-pulse Doppler shift, range, equivalent velocity, and acceleration. Following that, we perceive that the parameters of the matched filter are related to the target motion parameters, i.e., a priori unknown, which inspires us to propose an iterative coherent integration method to achieve the intrapulse and interpulse integration. A PES model matched filter with initial parameters is defined and a roughly motion parameter estimation is acquired by the PES model-based Keystone transform (PES-KT) and inner-pulse chirp Fourier transform (CFT). The estimated parameters are used for matched filter construction and coherent integration. This process is performed over multiple iterations to provide an accurate motion parameter result. In the end, a target detection experiment is given to show the effectiveness of the proposed method using space-air-based bistatic radar.

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