Comprehensive Error Calibration Algorithm based on Non-uniform Dual Circular Array

Jiajia Zhang, Hui Chen, Meng-yu Ni, Jiangang Wang
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Abstract

In this paper, a comprehensive error calibration method is proposed for non-uniform dual circular arrays in the presence of gain-phase errors, position errors and mutual coupling errors. By rotating the platform, only one auxiliary calibration source is used to construct three time-sharing calibration sources. According to the orthogonality principle of signal subspace and noise subspace, the cost function is constructed, and the coefficients of gain-phase errors, position errors and mutual coupling errors are obtained through iteration. When the mutual coupling error is estimated, the algorithm makes full use of the structural characteristics of the non-uniform dual circular array. The algorithm does not require any additional auxiliary array element, the principle is simple and easy to implement. Simulation results show that the proposed algorithm can effectively calibrate the comprehensive error of non-uniform dual circular array.
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基于非均匀双圆阵列的综合误差标定算法
针对存在增益相位误差、位置误差和互耦误差的非均匀双圆阵列,提出了一种综合误差校准方法。通过旋转平台,仅利用一个辅助标定源构建三个分时标定源。根据信号子空间和噪声子空间的正交性原理,构造代价函数,通过迭代得到增益相位误差、位置误差和互耦误差系数。在估计互耦误差时,该算法充分利用了非均匀双圆阵的结构特点。该算法不需要任何额外的辅助数组元素,原理简单,易于实现。仿真结果表明,该算法能有效地校正非均匀双圆阵的综合误差。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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