The Echo Model and Simulation Method of Impulse Radar Fuze Based on Attribute Scattering Center Model

Author:

Kong Ming,Li Yuzhao,Chen Jichi,Wang Xu,Wei Guohua

Abstract

Abstract This article focuses on solving the problem of performance evaluation and algorithm verification of ultra-bandwidth impulse radar fuze. A modeling and simulation method for the scattering echo of an impulse radar target is proposed. We distinguish the scattering center of the extended target and construct its echo based on the attribute scattering center model. Besides, the position variation characteristics of the scattering center, and the azimuth dependence of the scattering amplitude are fully considered. At the same time, the motion information of the target is modulated to obtain the target scattering echo of the impulse radar. We generate the scattering echo of the typical streamlined moving target at different observation angles by calculation. The changes of the echo position and amplitude of each scattering center are consistent with the scattering echo model. We use the generated echo data to image, and the imaging results are basically consistent with the shape of the target, which verifies the effectiveness of the proposed method.

Publisher

IOP Publishing

Subject

General Physics and Astronomy

Reference16 articles.

1. Missile radio fuze echo simulation based on bright spot model;Feng;Modern Defence Technology,2008

2. Influence of motion factors on Doppler frequency of radar fuze echo;S J;Electronics Optics & Control,2019

3. Simulation of LFMCW fuze based on Simulink;Zhang H;Aero Weaponry,2020

4. Anti-jamming performance analysis and simulation of ultra-wideband fuze;L B;Journal of Projectiles, Rockets, Missiles and Guidance,2011

5. Simulation design of ultra-wideband fuze pulse source;Wang;Journal of Projectiles, Rockets, Missiles and Guidance,2006

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