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首页> 外文期刊>Aerospace and Electronic Systems, IEEE Transactions on >Design of Transmit Beamwidth and Dwell Time UnderK-Distributed Clutter and Gaussian Noise
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Design of Transmit Beamwidth and Dwell Time UnderK-Distributed Clutter and Gaussian Noise

机译: K 分布杂波和高斯噪声下的发射波束宽度和停留时间设计

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摘要

This paper handles the problem of optimizing the scanning policy of a surveillance system in the presence of Rayleigh targets in a mixture of K-distributed clutter and Gaussian noise. Adopting the detection rate (DR) and false alarm rate (FAR) as performance measures, we show that the said optimization amounts to solving a constrained DR maximization, wherein the free parameters are the transmit beamwidth, the dwell time, and the detection threshold, whereas the constraints concern the maximum FAR and time on target. A thorough performance assessment is offered, aimed at eliciting the influence of the signal-to-noise and clutter-to-noise ratios, the clutter shape parameter, and the rate of change of the target response. The results indicate that, although a uniformly optimum transmit policy does not exist, some trends can be devised, which appears of particular relevance especially for systems that can avail themselves of some degree of cognition.
机译:本文讨论了在瑞利目标存在且K分布杂波和高斯噪声混合的情况下优化监视系统的扫描策略的问题。通过采用检测率(DR)和误报率(FAR)作为性能指标,我们表明上述优化等同于解决了约束DR最大化问题,其中自由参数是发射波束宽度,停留时间和检测阈值,而约束条件涉及最大FAR和目标时间。提供了全面的性能评估,旨在引起信噪比和杂波噪声比,杂波形状参数以及目标响应变化率的影响。结果表明,尽管不存在统一的最佳传输策略,但可以设计出一些趋势,特别是对于可以利用一定程度的认知的系统而言,这些趋势显得尤为重要。

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