Enhanced DOA visibility of correlated sources for multistatic shipborne surface wave radar

Bo Li, Bin Xu, Yeshu Yuan
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Abstract

A modified array interpolation approach to correlated source localization is presented for the surface wave radar (SWR) that employs multiple uniform linear subarrays (ULSAs) mounted on different ships to compose a multistatic shipborne SWR receiving array. This approach that overcomes the main shortcomings of some existing interpolation techniques, comprises three stages: a first stage for preestimating direction-of-arrivals (DOAs) on an assumption that at least a single ULSA is available for correlated source localization, a second stage for specifying a union of nonoverlapping narrow subsectors as the interpolated sector to cover only the preestimates, and a third stage for reestimating DOAs with the virtual uniform linear array (VULA), in which we skip noise prewhitening and appropriately increase the amount of forward/backward spatial smoothing (FBSS) that plays a major role in lowering noise floor while decorrelating correlated sources. Monte Carlo simulations demonstrate the validity of our proposal.
舰载多基地面波雷达相关源的DOA可见性增强
针对面波雷达相关源定位问题,提出了一种改进的阵列插值方法,该方法采用安装在不同舰船上的多个均匀线性子阵列组成多静态舰载面波雷达接收阵列。这种方法克服了一些现有插值技术的主要缺点,包括三个阶段:第一阶段是在假设至少有一个ULSA可用于相关源定位的情况下预估到达方向(doa),第二阶段是指定非重叠窄子扇区的联合作为内插扇区,仅覆盖预估,第三阶段是使用虚拟均匀线性阵列(VULA)重新估计doa。其中,我们跳过噪声预白化,并适当增加前向/后向空间平滑(FBSS)的量,FBSS在降低噪声本底同时去相关相关源中起主要作用。蒙特卡洛仿真验证了该方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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