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首页> 外文期刊>IEICE Transactions on Fundamentals of Electronics, Communications and Computer Sciences >Application of Simultaneous Equations Method to ANC System with Non-minimum Phase Secondary Path
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Application of Simultaneous Equations Method to ANC System with Non-minimum Phase Secondary Path

机译:联立方程法在非最小相位二次路径ANC系统中的应用

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摘要

In this paper, we propose a method capable of shortening the distance from a noise detection microphone to a loudspeaker in active noise control system with non-minimum phase secondary path. The distance can be basically shortened by forming the noise control filter, which produces the secondary noise provided by the loudspeaker, with the cascade connection of a non-recursive filter and a recursive filter. The output of the recursive filter, however, diverges even when the secondary path includes only a minimum phase component. In this paper, we prevent the divergence by utilizing MINT (multi-input/output inverse theorem) method increasing the number of secondary paths than that of primary paths. MINT method, however, requires a large scale inverse matrix operation, which increases the processing cost. We hence propose a method reducing the processing cost. Actually, MINT method has only to be applied to the non-minimum phase components of the secondary paths. We hence extract the non-minimum phase components and then apply MINT method only to those. The order of the inverse matrix thereby decreases and the processing cost can be reduced. We finally show a simulation result demonstrating that the proposed method successfully works.
机译:在本文中,我们提出了一种能够在具有非最小相位次级路径的有源噪声控制系统中缩短从噪声检测麦克风到扬声器的距离的方法。通过形成噪声控制滤波器,基本上可以缩短距离,该噪声控制滤波器通过非递归滤波器和递归滤波器的级联来产生扬声器提供的二次噪声。但是,即使次级路径仅包含最小相位分量,递归滤波器的输出也会发散。在本文中,我们通过使用MINT(多输入/输出逆定理)方法来防止发散,从而增加了次要路径的数量而不是主要路径的数量。然而,MINT方法需要大规模的逆矩阵运算,这增加了处理成本。因此,我们提出一种降低处理成本的方法。实际上,MINT方法仅应应用于次级路径的非最小相位分量。因此,我们提取非最小相位分量,然后仅将MINT方法应用于这些分量。由此,逆矩阵的阶数减小,并且可以降低处理成本。最后,我们给出了一个仿真结果,表明所提出的方法可以成功地工作。

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