Mitigation of Cross-modulation Effects in Radar Receivers with Memory

Euan Ward, B. Mulgrew
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引用次数: 3

Abstract

Modern mass produced radar systems offer a wide variety of advantages over their bespoke predecessors however to achieve these benefits the linearity of their RF receivers is often sacrificed. This compromise leaves these modern sensors susceptible to unwanted cross-modulation effects and with the RF spectrum becoming increasingly crowded this problem is only going to become more pertinent. If mitigation techniques are to be developed they must correct for the nonlinear distortion applied to both the amplitude and phase of the returned radar signal. In order to accurately model nonlinear phase effects in the radar receiver we must consider memory. This paper studies how introducing nonlinear memory in the radar receiver affects the cross-modulation distortion generated. It also presents a simple cross-modulation mitigation technique developed in the communications literature and applies it to the radar cross-modulation problem. As a result the simple communications based mitigation technique successfully corrects for cross-modulation distortion generated from a memoryless nonlinear radar receiver. However, it is ineffective when nonlinear memory effects are introduced. This is a significant result as it suggests that if the nonlinearities generating cross-modulation effects in modern radar are found to have memory then sophisticated memory mitigation techniques will have to be developed.
具有存储器的雷达接收机中交叉调制效应的缓解
现代大规模生产的雷达系统与其定制的前辈相比具有各种各样的优势,但是为了实现这些优势,往往牺牲了其RF接收器的线性度。这种折衷使得这些现代传感器容易受到不必要的交叉调制效应的影响,并且随着RF频谱变得越来越拥挤,这个问题只会变得更加相关。如果要发展减缓技术,就必须纠正对返回的雷达信号的幅度和相位施加的非线性失真。为了准确地模拟雷达接收机中的非线性相位效应,必须考虑存储器问题。本文研究了在雷达接收机中引入非线性存储器对产生的交叉调制失真的影响。本文还介绍了通信文献中开发的一种简单的交叉调制缓解技术,并将其应用于雷达交叉调制问题。因此,基于简单通信的缓解技术成功地纠正了由无记忆非线性雷达接收机产生的交叉调制失真。然而,当引入非线性记忆效应时,这种方法就失效了。这是一个重要的结果,因为它表明,如果发现现代雷达中产生交叉调制效应的非线性具有记忆性,则必须开发复杂的记忆缓解技术。
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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