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Estimating Radar Detection Coverage Probability of Targets in a Cluttered Environment Using Stochastic Geometry

机译:使用随机几何估计杂乱环境中目标的雷达探测覆盖率

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We analyze the performance of a radar in an environment where clutter is constituted by discrete scatterers whose radar cross-sections are comparable to that of the target. An indoor radar deployment to detect humans in the presence of furniture is an example of such a scenario. We propose a figure of merit called the radar detection coverage probability ($P_{DC}$) to indicate the likelihood of the signal to clutter and noise ratio at the radar being above a predefined threshold under diverse radar, target and clutter conditions. We provide analytical expressions derived from stochastic geometry formulations to derive the $P_{DC}$. Based on our analyses, we find useful insights regarding the optimal choice of the transmitted power and radar bandwidth. We also study the sensitivity of the performance of the radar to clutter density, clutter cross-section and path loss under both line-of-sight and non-line-of-sight conditions. Our results are verified through Monte Carlo simulations.
机译:我们分析了在杂波由离散散射体构成的环境中雷达的性能,这些散射体的雷达横截面与目标的横截面相当。在这种情况下,可以使用室内雷达部署来检测存在家具的人。我们提出了一个品质因数,称为雷达探测覆盖率( $ P_ {DC} $ < / tex> )表示在各种雷达,目标和杂波条件下,雷达处的信号杂波和噪声比超过预定义阈值的可能性。我们提供从随机几何公式得出的解析表达式,以得出 $ P_ {DC} $ < / tex> 。根据我们的分析,我们发现有关发射功率和雷达带宽的最佳选择的有用见解。我们还研究了视线和非视线条件下雷达性能对杂波密度,杂波横截面和路径损耗的敏感性。我们的结果通过蒙特卡洛模拟得到了验证。

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