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Performance analysis of a radar target discrimination technique

机译:雷达目标识别技术的性能分析

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摘要

The performance of a radar target discrimination technique using multiple-frequency scattering amplitude without phase data is investigated. Based on the concept of natural resonance frequencies, the technique is aspect independent so that a priori information of the aspect angle is not necessary. The radar cross sections (RCSs) of spheroids are calculated numerically to simulate the received radar returns for distinguishing different spheroids and wires in the resonance frequency range by the proposed technique. By Monte Carlo simulation, the discrimination error rate is estimated as a function of the standard deviation of added noise. The numerical results show that the discrimination algorithm works well under moderately noisy situations and can be applied even in a high-resonance frequency range.
机译:研究了在没有相位数据的情况下使用多频散射幅度的雷达目标识别技术的性能。基于自然共振频率的概念,该技术是与方面无关的,因此不需要纵横比角的先验信息。通过数值计算球体的雷达横截面(RCS),以模拟所接收的雷达回波,从而通过所提出的技术来区分共振频率范围内的不同球体和导线。通过蒙特卡洛仿真,辨别误差率被估计为附加噪声标准偏差的函数。数值结果表明,该判别算法在中等噪声情况下效果良好,即使在高共振频率范围内也可以应用。

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