Wideband phased array calibration method for digital beamforming

M. Longbrake, L. Liou, D. Lin, P. Buxa, J. McCann, T. Pemberton, T. Dalrymple, S. Hary
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引用次数: 5

Abstract

Previous study has used chirp signals to characterize the RF response of a multi-channel RF receiver [1]. The results showed a significant channel imbalance. After applying a time-reversal filter, the channel imbalance was remedied and both phase and amplitude were realigned among the channels. In the present study, the RF response of a complete multichannel receiver with antenna was characterized. A 1-8 GHz phased array antenna was mounted in an anechoic chamber and a chirp signal was used to measure the frequency response of each channel as a function of azimuth angle. Each channel's response was equalized using a time-reversal filter derived from the measured data and a combined beam pattern was formed. Time-reversal filters that steer the beam were also generated and it was found that sidelobe level worsened with larger steer angles. A simple mutual coupling model was proposed to explain the beam pattern feature.
数字波束形成的宽带相控阵校准方法
先前的研究使用啁啾信号来表征多通道射频接收机的射频响应[1]。结果显示了明显的通道不平衡。在应用时间反转滤波器后,通道不平衡得到纠正,通道之间的相位和幅度都重新对齐。本文研究了带天线的完整多通道接收机的射频响应特性。在消声室中安装1-8 GHz相控阵天线,利用啁啾信号测量各通道的频率响应随方位角的变化规律。每个通道的响应使用从测量数据导出的时间反转滤波器进行均衡,并形成组合波束方向图。生成了引导波束的时间反转滤波器,发现随着引导角度的增大,旁瓣电平变差。提出了一种简单的互耦合模型来解释光束方向图特征。
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