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首页> 外文期刊>IEEE Transactions on Aerospace and Electronic Systems >Angle/Doppler estimation in heavy-tailed clutter backgrounds
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Angle/Doppler estimation in heavy-tailed clutter backgrounds

机译:重尾杂波背景下的角度/多普勒估计

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摘要

This work describes new methods on the modeling of the amplitude statistics of airborne radar clutter by means of alpha-stable distributions. We develop joint target angle and Doppler, maximum likelihood-based estimation techniques from radar measurements retrieved in the presence of impulsive uncorrelated noise modeled as an alpha-stable random process. We derive the Cramer-Rao bounds (CRBs) for the additive Cauchy interference scenario to assess the best case estimation accuracy which can be achieved. In addition, we introduce a new joint spatial- and Doppler-frequency high-resolution estimation technique based on the fractional lower order statistics of the measurements of a radar array. Simulation results demonstrate that the proposed methods can be of interest in the study of space-time adaptive processing (STAP) for airborne pulse Doppler radar arrays operating in impulsive interference environments
机译:这项工作描述了一种通过阿尔法稳定分布对机载雷达杂波幅度统计建模的新方法。我们开发了联合目标角度和多普勒,基于最大似然的估计技术,该技术是根据在存在脉冲无关噪声的情况下获得的雷达测量结果建模的,该噪声被建模为α稳定随机过程。我们推导了加性柯西干扰情景的Cramer-Rao界(CRB),以评估可以实现的最佳案例估计精度。此外,我们基于雷达阵列测量结果的分数低阶统计量,引入了一种新的联合空间和多普勒频率高分辨率估计技术。仿真结果表明,所提出的方法对于研究脉冲干扰环境下机载脉冲多普勒雷达阵列的时空自适应处理(STAP)具有重要意义。

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