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Self-Calibration-Based Robust Near-Field Adaptive Beamforming for Microphone Arrays

机译:基于自校准的鲁棒近场自适应波束形成麦克风阵列

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Near-field beamforming using a microphone array has found many applications, such as sound acquisition in small rooms. However, robust near-field adaptive beamforming (NABF) against focal point errors has not been studied much in the literature until recently. In this brief, a robust near-field adaptive beamformer is proposed. The proposed method is developed by combining a new formulation of the point-constrained NABF and a self-calibration technique, in the presence of focal point uncertainties. The proposed method suffers from no loss in the degrees of freedom for interference rejection. Compared with conventional calibration-based adaptive beamformers, the proposed method has the advantage of not needing a noise-free calibration signal. Simulation results demonstrate that the performance of the proposed method is superior to that of the existing methods
机译:使用麦克风阵列的近场波束成形已经发现了许多应用,例如在小房间中获取声音。然而,直到最近,在文献中还没有对针对焦点误差的鲁棒近场自适应波束形成(NABF)进行过很多研究。在本文中,提出了一种鲁棒的近场自适应波束形成器。在焦点不确定的情况下,通过结合点约束NABF的新公式和自校准技术来开发提出的方法。所提出的方法在干扰抑制的自由度上没有损失。与传统的基于校准的自适应波束形成器相比,该方法具有不需要无噪声校准信号的优点。仿真结果表明,该方法的性能优于现有方法。

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