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SAR imagery using chaotic carrier frequency agility pulses

机译:使用混沌载频捷变脉冲的SAR图像

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Synthetic aperture radar (SAR) systems are getting more and more applications in both civilian and military remote sensing missions. With the increasing deployment of electronic countermeasures (ECM) on modern battlefields, SAR encounters more and more interference jamming signals. The ECM jamming signals cause the SAR system to receive and process erroneous information which results in severe degradations in the output SAR images and/or formation of phony images of nonexistent targets. As a consequence, development of the electronic counter-countermeasures (ECCM) capability becomes one of the key problems in SAR system design. This paper develops radar signaling strategies and algorithms that enhance the ability of synthetic aperture radar to image targets under conditions of electronic jamming. The concept of SAR using chaotic carrier frequency agility pulses (CCFAP-SAR) is first proposed. Then the imaging procedure for CCFAP-SAR is discussed in detail. The ECCM performance of CCFAP-SAR for both depressive noise jamming and deceptive repeat jamming is analyzed. The impact of the carrier frequency agility range on the image quality of CCFAP-SAR is also studied. Simulation results demonstrate that, with adequate agility range of the carrier frequency, the proposed CCFAP-SAR performs as well as conventional radar with linear frequency modulation (LFM) waveform in image quality and slightly better in anti-noise depressive jamming; while performs very well in anti-deception jamming which cannot be rejected by LFM-SAR.
机译:合成孔径雷达(SAR)系统在民用和军事遥感任务中都得到越来越多的应用。随着电子对策(ECM)在现代战场上的部署越来越多,SAR遇到越来越多的干扰干扰信号。 ECM干扰信号使SAR系统接收和处理错误信息,从而导致输出SAR图像严重退化和/或不存在目标的伪造图像形成。因此,电子对抗措施(ECCM)能力的发展成为SAR系统设计中的关键问题之一。本文开发了雷达信号策略和算法,以增强合成孔径雷达在电子干扰条件下成像目标的能力。首先提出了使用混沌载波频率捷变脉冲(CCFAP-SAR)的SAR概念。然后详细讨论了CCFAP-SAR的成像过程。分析了CCFAP-SAR的ECCM性能对压抑性噪声干扰和欺骗性重复干扰的影响。还研究了载波频率捷变范围对CCFAP-SAR图像质量的影响。仿真结果表明,在适当的载波频率敏捷范围内,所提出的CCFAP-SAR在图像质量上与传统雷达具有线性调频(LFM)波形的性能相同,并且在抗噪声抑制干扰方面略胜一筹。同时在防欺骗干扰方面表现出色,这是LFM-SAR无法拒绝的。

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