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Optimum Placement of DF Antenna Elements for Accurate DOA Estimation in a Harsh Platform Environment

机译:在严苛的平台环境中,DF天线元件的最佳放置可实现准确的DOA估计

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摘要

This paper presents a systematic approach to the optimum placement of direction finding (DF) antennas in a harsh platform environment. A circular array with omni-directional elements is considered for azimuthal direction of arrival (DOA) estimation based on the multiple signal classification (MUSIC) algorithm. The element positions are optimized by the use of a genetic algorithm (GA) in conjunction with the FEKO electromagnetic simulator. The proposed approach is first tested with a generic platform shape. It is then extended to a more realistic military aircraft model with a strong scattering object. The optimized results show a significant performance improvement over the uniform circular array in both platform environments.
机译:本文提出了一种在恶劣的平台环境中优化测向(DF)天线位置的系统方法。基于多信号分类(MUSIC)算法,考虑使用具有全方位元素的圆形阵列进行到达方位角(DOA)估计。通过使用遗传算法(GA)结合FEKO电磁模拟器,可以优化元素位置。首先使用通用平台形状对提出的方法进行测试。然后将其扩展到具有强散射对象的更逼真的军用飞机模型。优化结果表明,在两种平台环境下,均一圆形阵列的性能均得到了显着改善。

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