Joint design of phase coded waveform and mismatched filter

Leilei Xu, Hongwei Liu, Kuiying Yin, Huikai Zang, Shenghua Zhou, Hong-xian Wang
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引用次数: 16

Abstract

Pulse compression radar usually has undesirables range sidelobe, which makes it difficult to detect weak targets nearby strong targets. Low range sidelobe level at the radar receiving end can suppress the interference from strong target returns, and hence is an attractive feature for radar systems. In this paper, we study a waveform design method that jointly optimize a phase coded waveform and a mismatch filter. The principal idea is to minimize the peak sidelobe level (PSL) of the range sidelobes after mismatched filtering with a constraint of signal-to-noise ratio (SNR) loss with respect to that after matched filtering. The optimization problem is solved by a so-called least-pth minimax algorithm including the Limited-memory BFGS (L-BFGS) algorithm as its subalgorithm. Numerical results show that, compared with the methods designing the phase coded waveform and mismatched filter separately, the joint waveform design method can yield a much lower sidelobe level output with a given SNR loss.
相位编码波形与失配滤波器的联合设计
脉冲压缩雷达通常存在不理想的距离旁瓣,使得在强目标附近难以探测到弱目标。雷达接收端的低距离旁瓣电平可以抑制强目标回波的干扰,是雷达系统的重要特性。本文研究了一种相位编码波形和失配滤波器联合优化的波形设计方法。其主要思想是在信噪比损失约束下,使失匹配滤波后距离旁瓣的峰值旁瓣电平(PSL)相对于匹配滤波后的峰值旁瓣电平最小。该优化问题采用以有限存储BFGS (L-BFGS)算法为子算法的最小路径极大极小算法求解。数值结果表明,与分别设计相位编码波形和失配滤波器的方法相比,在一定信噪比损失的情况下,联合波形设计方法可以产生更低的旁瓣电平输出。
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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