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Correlation Based Characterisation of Phased Array Components

机译:相控阵组件的相关性表征

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The German SAR satellite TerraSAR is currently under development. The SAR instrument onboard the satellite will be equipped with an array antenna consisting of 384 radiators, each with its own Transmit-Receive Modules (TRM). As usual for this kind of active planar antennas, all TRMs are independently adjustable in phase and gain. To ensure precise knowledge of phase and gain of each TRM also after launch, an in-flight module characterization/calibration capability is implemented within the instrument, following a correlation-based approach described by [1]. The proposed calibration method allows simultaneous characterization by phase and gain of a large number of TRM or TRM clusters, ideally of all TRMs of the antenna. This paper outlines the characterization method and presents results onto the parameter choice of the characterization algorithm, together with results on achievable characterization accuracy. Also TRM failures are being assessed w.r.t. their effect onto characterization. For such TRMs, actually transmitted signal phase and amplitude do not correspond to commanded phase any longer. The robustness of the estimation against such damage is to be analyzed as well as its ability to detect the non-plausible TRM values.
机译:德国SAR卫星实践目前正在开发。 SAR仪器卫星卫星将配备一个由384个散热器组成的阵列天线,每个散热器都有其自己的传输接收模块(TRM)。像往常一样,对于这种活跃的平面天线,所有TRMS都可以在相位和增益中独立调节。为了确保在发射之后确保每个TRM的相位和增益的精确知识,按照基于相关的方法,在仪器内实现了飞行模块表征/校准能力,该方法在[1]中描述的相关方法。所提出的校准方法允许通过相位和增益同时表征大量TRM或TRM集群,理想地是天线的所有TRMS。本文概述了表征方法,并提出了表征算法的参数选择,以及可实现的表征精度的结果。还正在评估TRM故障。它们对特征的影响。对于这种TRMS,实际发送的信号相位和幅度不再对应于命令相位。估计这种损害的估计的鲁棒性以及其检测不合理的TRM值的能力。

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