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Joint 2-D DOA estimation and mutual coupling calibration for uniform rectangular arrays

机译:均匀矩形阵列的联合二维DOA估计和互耦合校准

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In this paper, a novel self-calibration method is proposed for uniform rectangular arrays to estimate two-dimensional (2-D) direction of arrival (DOA) in the presence of mutual coupling. By rearranging the perturbed array response in the transform domain, the estimation of 2-D DOA is decoupled from the calibration process, and the aperture loss is avoided as well. Then resorting to the rank reduction criteria, the 2-D DOAs can be blindly estimated just through two sequential steps of one-dimensional searches. Moreover, an accurate estimation of coupling coefficients can also be acquired for array calibration. Compared to the existing method, the proposed algorithm is more numerically efficient with improved accuracy. Simulation results verify the superior performance of the proposed algorithm.
机译:在本文中,提出了一种新颖的自校准方法,该方法用于均匀矩形阵列,以在存在相互耦合的情况下估计二维(2-D)到达方向(DOA)。通过在变换域中重新排列扰动的阵列响应,可以将二维DOA的估计与校准过程分离开来,并且还可以避免孔径损失。然后诉诸于秩降低标准,仅通过两个一维搜索顺序步骤就可以盲目估计二维DOA。此外,还可以获取耦合系数的准确估计值以进行阵列校准。与现有方法相比,该算法具有更高的数值效率和更高的精度。仿真结果验证了该算法的优越性能。

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