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首页> 外文期刊>Antennas and Propagation, IEEE Transactions on >Polarimetry With Phased Array Antennas: Sensitivity and Polarimetric Performance Using Unpolarized Sources for Calibration
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Polarimetry With Phased Array Antennas: Sensitivity and Polarimetric Performance Using Unpolarized Sources for Calibration

机译:相控阵天线的极化:使用非极化源进行校准的灵敏度和极化性能

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摘要

Polarimetric phased arrays require a calibration method that allows the system to measure the polarization state of the received signals. In this paper, we assess the polarimetric performance of two commonly used calibration methods that exploit unpolarized calibration sources. The first method obtains a polarimetrically calibrated beamforming solution from the two dominant eigenvectors of the measured signal covariance matrix. We demonstrate that this method is sensitivity equivalent to the theoretical optimal method, but suffers from an ambiguity that has to be resolved by additional measurements on (partially) polarized sources or by exploiting the intrinsic polarimetric quality of the antenna system. The easy-to-implement bi-scalar approach assumes that the feed system consists of two sets of orthogonally oriented antenna elements, each associated with one polarization. We assess its sensitivity and polarimetric performance over a wide field-of-view (FoV) using simulations of a phased array feed system for the Westerbork Synthesis Radio Telescope. Our results indicate that the sensitivity loss can be limited to 4.5% and that the polarimetric performance over the FoV is close to the best achievable performance. The latter implies that the intrinsic polarimetric quality of the antennas remains a crucial factor despite the development of novel polarimetric calibration methods.
机译:极化相控阵需要一种校准方法,该方法可使系统测量接收信号的极化状态。在本文中,我们评估了两种利用非偏振校准源的常用校准方法的偏振性能。第一种方法是从测量的信号协方差矩阵的两个主要特征向量中获得经过极化校准的波束成形解决方案。我们证明该方法的灵敏度与理论上的最佳方法相同,但存在歧义,必须通过对(部分)极化源进行额外测量或利用天线系统的固有极化质量来解决。易于实现的双标量方法假设馈电系统由两组正交定向的天线元件组成,每组天线元件与一个极化相关联。我们使用Westerbork合成射电望远镜的相控阵馈源系统仿真,评估了其在宽视场(FoV)上的灵敏度和极化性能。我们的结果表明,灵敏度损失可以限制为4.5%,并且在FoV上的极化性能接近最佳可达到的性能。后者意味着尽管开发了新型的极化校准方法,但天线的固有极化质量仍然是关键因素。

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