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Sector nulling in planar irregular sub-arrayed sparse array antennas

机译:平面不规则子阵列稀疏阵列天线中的扇区归零

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This study concerns wide angular sector (higher order) null synthesis in planar irregular sparse antenna arrays when aperture distributed sub-arrays are used to reduce the computational load. A hybrid optimisation tool has been used to find array element excitations to achieve as low as possible sector nulls for the desired sector width. Performance comparisons have been made for three sub-array configurations based on the obtained numerical results. Various interference jamming scenarios have been considered including single and dual sectors for single-dimensional () (1D) and two-dimensional (, ) (2D) nulls. The proposed optimisation scheme has shown to be successful for the synthesis of 1D and 2D sector nulls with depths as low as -100 dB for the given configuration with reduced computational time when compared with the full array. The comparison of achieved null depths for different sub-array sizes and convergence time has also been presented and discussed.
机译:这项研究涉及平面不规则稀疏天线阵列中的广角扇区(高阶)零合成,当使用孔径分布子阵列来减少计算负荷时。混合优化工具已用于查找阵列元素激励,以实现所需扇区宽度的尽可能低的扇区空值。基于获得的数值结果,对三种子阵列配置进行了性能比较。已经考虑了各种干扰干扰场景,包括用于一维()(1D)和二维(,)(2D)零位的单扇区和双扇区。对于给定的配置,与整个阵列相比,拟议的优化方案已成功地实现了深度为-100 dB的一维和二维扇区零点的合成,并减少了计算时间。还介绍和讨论了不同子阵列大小和收敛时间所获得的空值深度的比较。

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