Simulations of L-band Staring Radar Moving Target Integration Efficiency

Fabiola Gersone, A. Balleri, C. Baker, M. Jahangir
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引用次数: 1

Abstract

Aveillant Ltd has developed a staring L-band radar that deploys a static quasi-monostatic antenna in transmission and a static digital phased array on receive capable of generating multiple simultaneous beams. Because the antenna is not rotating, the radar can stare at targets and select long dwell times with no effect on the scan rate. High Doppler resolution can be achieved and used to detect small targets, such as drones, even in heavy clutter. Despite the staring array, targets moving with a variable radial velocity generate echoes with a time-varying Doppler frequency shift that limits the integration gain achievable with standard Fourier Transform based techniques. As a result, the number of pulses can be integrated remains limited to the effective coherent processing interval with a consequent suboptimal Signal to Noise Ratio (SNR). This paper presents the results of a set of simulations aimed at studying the integration gain efficiency of a staring radar of the type of the Aveillant Holographic radar for targets moving with a constant and non-constant radial velocity. The case of a target flying horizontally with respect to the radar boresight is investigated to show that compensation techniques can be potentially employed to maximise coherence on the target and the resulting integration gain.
l波段凝视雷达运动目标集成效率仿真
Aveillant有限公司开发了一种凝视l波段雷达,该雷达在发射时部署静态准单稳态天线,在接收时部署静态数字相控阵,能够产生多个同时波束。由于天线不旋转,雷达可以盯着目标并选择较长的停留时间,而不影响扫描速率。高多普勒分辨率可以实现,并用于检测小目标,如无人机,即使在重杂波。尽管采用了凝视阵列,但以可变径向速度移动的目标会产生具有时变多普勒频移的回波,这限制了基于标准傅里叶变换技术可实现的积分增益。因此,可以集成的脉冲数量仍然限制在有效的相干处理间隔内,从而导致次优信噪比(SNR)。本文给出了一组仿真结果,旨在研究一种瞄准雷达类型的Aveillant全息雷达对匀速和非匀速径向运动目标的积分增益效率。研究了相对于雷达瞄准轴水平飞行的目标的情况,表明补偿技术可以潜在地用于最大化目标上的相干性和由此产生的集成增益。
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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