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Localization accuracy of multi-mode emitters in target-dense scenarios

机译:目标密集场景下多模发射器的定位精度

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This paper extends previous work on the prediction of passive emitter localization accuracy to the case of multiple closely-spaced sources that emit agile, pulsed waveforms. The proposed approach is based on the iterative calculation of the multi-source Cramér-Rao Bound, conditioned by the probability of generating a measurement for a given source at a specific time instant. Such probability is derived from the probability of intercepting a pulse train by a frequency scanning receiver when multiple, eventually interfering, signals impinge on the receiving antennas. The proposed approach is compared with well-known lower bounds. Comparable results are yielded for well separated emitters in ideal conditions, whereas imperfect, realistic observation conditions clearly privilege the use of the newly proposed approach.
机译:本文将先前对无源发射器定位精度的预测工作扩展到发射敏捷的脉冲波形的多个紧密间隔的源的情况。所提出的方法基于对多源Cramér-Rao边界的迭代计算,其条件是在特定时刻为给定源生成测量值的概率。当多个最终干扰的信号撞击接收天线时,频率扫描接收器会截获脉冲序列的概率可以得出这种概率。将所提出的方法与众所周知的下限进行比较。在理想条件下,对于分离良好的发射器,可获得可比的结果,而不完美,现实的观察条件显然优先使用新提出的方法。

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