摘要
实际作战中,合理的布放间隔可有效增大浮空式角反射体阵列的RCS(Radar Cross Section)幅值,提高干扰成功概率。为了提高浮空式角反射体反导作战干扰效能,采用散射中心合成算法和CST(Computer Simulation Technology)电磁仿真软件,对阵列布放间隔进行了寻优。结果表明:对于由6个垂直边长为0.5m的浮空式角反射体组成的阵列,其较优的布放间隔为15m。
In actual combat,the Optimal laying interval of the floating-type corner reflector array can effectively increase the RCS( Radar Cross Section) and improve the probability of interference success. The purpose of this paper is to improve the anti-missile combat effectiveness of the floating reflector. The scattering center synthesis algorithm and CST( Computer Simulation Technology) electromagnetic simulation software are used to optimize the array deployment interval. The results show that the optimal laying interval is 15 m for an array of six floating-type corner reflectors with a vertical length of 0. 5 m.
作者
王聘
胡生亮
姚强
张俊
WANG Pin;HU Sheng-liang;YAO Qiang;ZHANG Jun(Electronics Engineering College, Naval University of Engineering, Wuhan 430033, China;Qiqihar Jianhua Machinery Company Limited, Qiqihar 161000,China)
出处
《指挥控制与仿真》
2018年第3期32-35,共4页
Command Control & Simulation
关键词
浮空式角反射体阵列
布放间隔
散射中心合成算法
CST
the array of corner reflectors
laying interval
the algorithm of scattering center synthesis
CST