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首页> 外文期刊>IEEE Transactions on Antennas and Propagation >Analysis of phase-focused near-field testing for multiphase-center adaptive radar systems
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Analysis of phase-focused near-field testing for multiphase-center adaptive radar systems

机译:多相中心自适应雷达系统的相聚焦近场测试分析

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摘要

Airborne or spaceborne radar systems often require tests before deployment to verify how well the system detects targets and suppresses clutter and jammer signals. The radar antenna diameter can be large and thus the conventional far-field test distance is impractical to implement. The theory and simulations of phase-focused near-field testing for adaptive phased array antennas is discussed. With near-field source deployment, standard phased-array near-field phase focusing provides far-field adaptive nulling equivalent performance at a range distance of one aperture diameter from the adaptive antenna under test. Both main beam clutter sources and sidelobe jammer sources are addressed. The phased array antenna elements analyzed are one-half wavelength dipoles over the ground plane. Bandwidth, polarization, array mutual coupling, and finite array edge effects are taken into account. Numerical simulations of an adaptive antenna that has multiple displaced phase centers indicate that near-field and far-field testing can be equivalent.
机译:机载或星载雷达系统通常需要在部署前进行测试,以验证系统检测目标的能力以及抑制杂波和干扰信号的能力。雷达天线直径可能较大,因此无法实现传统的远场测试距离。讨论了自适应相控阵天线的相位聚焦近场测试的理论和仿真。通过近场源部署,标准相控阵近场相位聚焦可在距测试中的自适应天线一个孔径直径的距离范围内提供远场自适应调零等效性能。主波束杂波源和旁瓣干扰源都得到了解决。分析的相控阵天线元件是接地平面上的二分之一波长偶极子。考虑带宽,极化,阵列互耦合和有限阵列边缘效应。具有多个相移中心的自适应天线的数值仿真表明,近场和远场测试可以等效。

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