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Direction finding in MIMO radar with unknown transmitter and/or receiver gains and phases

机译:使用未知发射器和/或接收器增益和阶段的MIMO雷达中找到的方向

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This paper addresses the problem of direction finding in multiple-input multiple-output radars with unknown transmitter and/or receiver gains and phases. Three different cases are considered and the corresponding methods for determining the direction-of-arrivals (DOAs) of multiple targets are presented. In the first case, the transmitter is well calibrated, but the receiver is uncalibrated with unknown gains and phases. On the contrary, the second case assumes that the receiver is well calibrated, whereas the transmitter is not. In the third case, the transmitter is uncalibrated, and the receiver is partly calibrated, i.e. only a portion of the receiver array is well calibrated and the remaining sensor elements have gain and phase uncertainties. For the first two cases, it is shown that a type of determinant-based or eigenvalue-based spectral can be utilized to determine the DOAs. For the third one, an ESPRIT-like algorithm is developed. Numerical examples are provided to validate the proposed methods and the results show that these methods are insensitive to the unknown gains and phases.
机译:本文解决了在多输入多输出雷达中找到的方向的问题,具有未知的发射器和/或接收器增益和阶段。考虑了三种不同的情况,并提出了确定多个目标的到达方向(DOA)的相应方法。在第一种情况下,发射器良好校准,但接收器与未知的增益和阶段没有统计。相反,第二种情况假设接收器良好校准,而发射器不是。在第三种情况下,发射机是未校准的,并且接收器部分校准,即仅接收器阵列的一部分校准并且剩余的传感器元件具有增益和相位不确定性。对于前两种情况,示出了可以利用基于决定因素或基于特征值的光谱来确定DOA。对于第三,开发了一种类似的eSPRIT样算法。提供数值例子以验证所提出的方法,结果表明这些方法对未知的增益和阶段不敏感。

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