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首页> 外文期刊>Radar, Sonar & Navigation, IET >Beam-space reduced-dimension space-time adaptive processing for airborne radar in sample starved heterogeneous environments
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Beam-space reduced-dimension space-time adaptive processing for airborne radar in sample starved heterogeneous environments

机译:样品饥饿异质环境中机载雷达波束空间降维时空自适应处理

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摘要

A method for selecting auxiliary channels in reduced-dimension space-time adaptive processing (STAP) is proposed for airborne multiple-input multiple-output radar. The auxiliary channel selection of the proposed approach is data dependent. Based on maximum cross-correlation energy metric, the significance of each spatial-Doppler channel is evaluated, and the auxiliary channels are selected step-by-step through utilising iteration. For the sake of achieving better performance as much as possible, the proposed approach will select two auxiliary channels at the first step, and select one channel at the next each step. Due to that the explicit physical meaning is very important for a STAP algorithm, the physical meaning of the maximum cross-correlation energy metric is discussed, and the fact that the local optimal output signal-to-interference-noise (SINR) performance can be assured by the maximum cross-correlation energy metric is proved theoretically. The simulations demonstrated that the output SINR loss of the proposed approach is about -1.9 dB when only two auxiliary channels are selected. Consequently, the proposed approach can reduce the requirement of the sample support dramatically. This will be more obvious advantage for the practical application in heterogeneous clutter environments where the number of secondary samples is extremely limited.
机译:提出了一种用于机载多输入多输出雷达的降维空时自适应处理中辅助信道的选择方法。所提出的方法的辅助信道选择取决于数据。基于最大互相关能量度量,评估每个空间多普勒信道的重要性,并通过迭代逐步选择辅助信道。为了尽可能获得更好的性能,所提出的方法将在第一步选择两个辅助通道,并在接下来的每一步选择一个通道。由于明确的物理意义对于STAP算法非常重要,因此讨论了最大互相关能量度量的物理意义,并且可以得出局部最佳输出信噪比(SINR)性能的事实。理论上证明了最大互相关能量度量所保证的结果。仿真表明,仅选择两个辅助通道时,该方法的输出SINR损耗约为-1.9 dB。因此,所提出的方法可以大大减少样品支持的需求。对于在次级样本数量非常有限的异构杂波环境中的实际应用而言,这将是更明显的优势。

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