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Performance improvements using the separated reference configuration for a multi-static FM broadcast band radar system

机译:使用多静态FM广播频带雷达系统的分离参考配置的性能改进

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A Commensal Radar (CR) uses the transmissions from radiators to detect and track targets. Since there is no requirement for dedicated spectrum allocation, Commensal Radars are gaining interest as an alternative to conventional, monostatic, active radar for applications such as air traffic control. Moves by governments to charge for spectrum usage is a growing concern for operators. Commensal radars have, until recently, been crippled by direct signal interference, limiting dynamic range [1]. Traditionally the CR system will produce bistatic detections by recording the reference and surveillance channels together at the same site with a multi-channel receiver. The multi-channel receiver ensures relative phase stability and inherent synchronicity between the 2 channels for the purpose of cross-correlation, to recover time delay and Doppler shift of the target(s). This configuration makes it difficult to use site selection to reduce the interference in the surveillance channel (e.g. by means of terrain shielding) as the reference antenna always needs to have Line of Site (LoS) to the illuminator. The “Separated Reference” [2] configuration was thus developed to allow the reference and surveillance antennas to be placed at widely separated sites (10s to 100s of km). Each receiver is equipped with a Global Navigation Satellite Systems (GNSS) stabilised oscillator to maintain relative channel synchronicity and provide accurate time stamping to allow the combing of many bistatic baselines. The separated reference configuration allows each antenna's location to be optimised purely for the detection function. This paper reports on some of the results and performance improvements obtained with field testing the separated reference configuration, beyond what was initially published [2].
机译:共生雷达(CR)使用来自散热器的传输来检测和跟踪目标。由于没有对专用频谱分配的要求,共数雷达是对诸如空中交通管制的应用的常规,单声道的活跃雷达的替代品的兴趣。各国政府向频谱使用收取的举措是运营商日益关注的问题。共数雷达在最近,通过直接信号干扰,限制动态范围[1]。传统上,CR系统将通过在具有多通道接收器的同一站点在同一站点上记录参考和监视通道来产生双孔突检测。多通道接收器确保2个通道之间的相对相位稳定性和固有的同步性以互相关的目的,以恢复目标的时间延迟和多普勒偏移。这种配置使得难以使用站点选择来减少监视通道的干扰(例如通过地形屏蔽),因为参考天线总是需要将网站(LOS)线路向发光器。因此开发了“分离的参考文献”[2]配置以允许参考和监测天线放置在广泛分离的位置(10s至100km)。每个接收器配备有全局导航卫星系统(GNSS)稳定的振荡器,以维持相对通道同步性并提供精确的时间戳,以允许许多双孔基线进行梳理。分离的参考配置允许每个天线的位置纯粹用于检测功能。本文报告了在现场测试分离的参考配置中获得的一些结果和性能改进,超出了最初发布的[2]。

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