Synthetic Aperture Radar Sidelobe Reduction Using Different Optimization Techniques

M. Youssef, Hala M. Abd El Qader, Khaled Ahmed
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Abstract

The synthetic aperture radar (SAR) can be used on either anaircraft or a LEO satellite for high resolution imaging on the earth’s surface. The transmitted pulse is to be shaped and modulated before transmission. A matched filter is used to construct a compressed time domain echo pulsed signal in the receiver. The main lobe level represents the desired target in the received echo compressed pulse to be detected. The sidelobe levels represent a false alarm (undesirable detection). This paper presents different optimization algorithms to reduce the sidelobe levels. These optimization algorithms are particle swarm optimization (PSO) algorithm, pattern search (PS) algorithm and Multi-Objective Genetic Algorithm (MOGA). The algorithms will be applied on different higher orders of polynomial instantaneous frequency modulation signals. A comparison study for these different optimization algorithms for reduction the sidelode levels is presented.
基于不同优化技术的合成孔径雷达旁瓣抑制
合成孔径雷达(SAR)可用于飞行器或近地轨道卫星,对地球表面进行高分辨率成像。发射的脉冲在发射前要进行成形和调制。利用匹配滤波器在接收机中构造压缩的时域回波脉冲信号。主瓣电平表示接收到的回波压缩脉冲中需要检测的目标。副瓣电平表示虚警(不期望的检测)。本文提出了不同的优化算法来降低副瓣电平。这些优化算法包括粒子群优化算法(PSO)、模式搜索算法(PS)和多目标遗传算法(MOGA)。该算法将应用于不同高阶多项式的瞬时调频信号。并对这些不同的优化算法进行了比较研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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