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Functional Bandwidth Criterion for Adaptive Array Performance

机译:自适应阵列性能的功能带宽标准

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摘要

The bandwidth of an interference source affects the performance of an adaptive array. The nature and degree of this effect, however, depends on the application considered. To analyze the bandwidth's effects correctly, therefore, a metric that reflects an adaptive array's performance for that application must be chosen. This paper employs a quantity known as the percentage of available sky (PAS) to analyze the bandwidth's effects on the performance of an adaptive array with a GPS receiver for GPS signal detection and tracking. The PAS, an important performance metric in GPS applications, is the fraction of area on a unit hemisphere where GPS signals are available for detection and tracking. The methodology to obtain the PAS for the minimum variance distortionless response (MVDR) beamformer is outlined. Results are presented that show how various system parameters influence the bandwidth's effect on the PAS. A comparison of the results from the PAS with the currently accepted criterion for bandwidth classification shows that the latter is not a reliable indicator of bandwidth effects on beamformer performance for GPS signal detection and tracking.
机译:干扰源的带宽会影响自适应阵列的性能。但是,这种影响的性质和程度取决于所考虑的应用。因此,为了正确分析带宽的影响,必须选择一个反映该应用的自适应阵列性能的度量。本文采用称为可用天空百分比(PAS)的量来分析带宽对具有GPS接收器的自适应阵列的性能的影响,以进行GPS信号检测和跟踪。 PAS是GPS应用程序中的一项重要性能指标,是单位半球上GPS信号可用于检测和跟踪的面积的一部分。概述了获得用于最小方差无失真响应(MVDR)波束形成器的PAS的方法。结果表明,各种系统参数如何影响带宽对PAS的影响。将PAS的结果与当前接受的带宽分类标准进行比较表明,后者并不是带宽对GPS信号检测和跟踪对波束形成器性能的影响的可靠指标。

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