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Wideband array self-calibration and DOA estimation under large position errors

机译:大位置误差下的宽带阵列自校准和DOA估计

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摘要

For wideband array signals, existing self-calibration methods use a first order approximation to simplify the estimation procedure under the assumption of small sensor position errors. However, the performance will degrade severely as the position errors increase. In this paper, a novel self calibration method based on the time-frequency distributions (TFDs) is proposed to relieve the small errors constraint. We firstly develop an approach for wideband signals to select the TFDs of each source. Then the TFDs are utilized to obtain the propagation delays, which have a simple linear relationship with the sensor positions. The direction of arrival (DOA) and positions are finally estimated by a two-step iteration without any approximation. Simulation results demonstrate that the proposed method can achieve accurate DOA and position estimation over a broad range of position errors with lower computational complexity, and outperforms existing self-calibration algorithms. (C) 2018 Elsevier Inc. All rights reserved.
机译:对于宽带阵列信号,现有的自校准方法使用一阶近似来简化小传感器位置误差的假设下的估计过程。但是,随着位置误差的增加,性能会严重降低。本文提出了一种基于时频分布(TFD)的新型自校准方法来缓解小错误约束。我们首先开发一种宽带信号的方法来选择每个源的TFD。然后利用TFD来获得与传感器位置具有简单线性关系的传播延迟。最终估计到达方向(DOA)和位置,其两步迭代而没有任何近似。仿真结果表明,所提出的方法可以在具有较低计算复杂度的广泛位置误差范围内实现精确的DOA和位置估计,并且优于现有的自校准算法。 (c)2018年Elsevier Inc.保留所有权利。

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