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Optimization of Direct Direction Finding Method with Two-Dimensional Correlative Processing of Spatial Signal

机译:空间信号二维相关处理的直接方向发现方法优化

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摘要

In this article, the main parameter of the correlative-interferometric direction finding method with two-dimensional correlative processing of spatial signal in the aperture of a linear antenna array (AA) is determined as the value of spatial shift within the AA aperture. The corresponding objective function is also formed. Analytical optimization of this parameter is presented and a comparative analysis of analytical calculations based on simulation results is conducted. In the simulation, a range of dependencies of the middle square deviation of estimation of direction on the value of the spatial shift for a signal-to-noise ratio of 0 dB, for minimum 3-sample and 4-sample Blackman-Harris windows of the spectral analysis, is received. The value of the middle square deviation of estimation of direction will be minimal and will equal 0.02 degrees using a minimum 3-sample Blackman-Harris window with the -67 dB level of side lobes. It offers high noise immunity and high accuracy of direction finding.
机译:在本文中,确定具有线性天线阵列(AA)的光圈中的空间信号的三维相关处理的相关干涉式方向查找方法的主参数被确定为AA孔径内的空间偏移的值。还形成了相应的目标函数。提出了该参数的分析优化,并进行了基于模拟结果的分析计算的比较分析。在模拟中,估计方向的中间平方偏差的一系列依赖性对空间移位的值为0 dB的信噪比,最小3样本和4-Sample Blackman-Harris Windows接收光谱分析。方向估计的中间平方偏差的值将是最小的,并且使用具有-67dB侧瓣的最小3样品黑人-Harris窗口等于0.02度。它具有高抗噪性和高精度的方向发现。

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