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Estimation of DOA and phase error using a partly calibrated sensor array with arbitrary geometry

机译:使用具有任意几何形状的部分校准传感器阵列估算DOA和相位误差

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A new method is presented to effectively estimate the direction-of-arrival (DOA) of a source signal and the phase errors of a sensor array with arbitrary geometry. Assuming that one sensor (except the reference one) has been calibrated, the proposed method appropriately reconstruct the data matrix and establish a series of linear equations with respect to the unknown parameters through eigenvalue decomposition (EVD). We build a LS problem with a quadratic constraint and solve it by two approaches. Unlike the conventional methods which are limited to specific array geometries, the proposed can be applied to arbitrary arrays. Moreover, it only requires one calibrated sensor, which may not be consecutively spaced to the reference one. The effectiveness of the proposed method is validated by simulation results.
机译:提出了一种有效估计源信号的到达方向(DOA)和具有任意几何形状的传​​感器阵列的相位误差的新方法。假设已经校准了一个传感器(参考传感器除外),则所提出的方法通过特征值分解(EVD)适当地重构数据矩阵并针对未知参数建立一系列线性方程式。我们建立一个具有二次约束的最小二乘问题,并通过两种方法解决。与限于特定阵列几何形状的常规方法不同,所提出的方法可以应用于任意阵列。此外,它仅需要一个校准的传感器,该传感器可能不会与参考传感器连续地间隔开。仿真结果验证了所提方法的有效性。

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