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首页> 外文期刊>The Journal of Engineering >Array self-calibration for sky-wave over-the-horizon radar with gain-phase errors
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Array self-calibration for sky-wave over-the-horizon radar with gain-phase errors

机译:阵列自校准用于天波过度地平线雷达,具有增益相误差

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摘要

This study proposes a novel algorithm for sky-wave over-the-horizon (OTH) radar array self-calibration with angle-independent gain-phase errors. The proposed method exploits backscattered echo from an ionised meteor trail, which can be considered as disjoint sources of opportunity for their spatial and temporal fluctuations during coherent processing interval (CPI). Moreover, this novel self-calibration algorithm can non-iteratively and jointly estimate the gain-phase errors as well as the directions of arrival (DOA) of all the echoes even in large array errors. Simulations illustrate the good performance and efficiency of the method.
机译:本研究提出了一种新颖的天波过度地平线(OTH)雷达阵列自校准与角度无角度的增益相位误差。所提出的方法利用离电离的流动路径的反向散射回声,这可以被认为是在相干处理间隔(CPI)期间的空间和时间波动的差异机会源。此外,这种新颖的自校准算法可以非迭代并共同估计增益相位误差以及即使在大阵列错误中也可以是所有回波的到达(DOA)的方向。仿真说明了该方法的良好性能和效率。

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