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首页> 外文期刊>IETE Journal of Research >Higher Order Statistics for Estimation of Degree of Noncausality in Active Noise Control System
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Higher Order Statistics for Estimation of Degree of Noncausality in Active Noise Control System

机译:主动噪声控制系统中非因果程度估计的高阶统计

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The paper highlights the effects of degree of noncausality in the performance of single channel Active Noise Control (ANC) system. It is shown that for the optimal positioning of the secondary source (loudspeaker) the degree of noncausality calculation is important. It is also restated that the empirical formula found by Elliot et al [1,2] for the maximum convergence coefficient, which is used in the filtered-x LMS algorithm, is important to be evaluated. Hence to evaluate the degree of noncausality and to find out the Elliot's approximate convergence coefficient, the primary and the secondary path delays are required to be estimated apriori. A novel higher order statistics (HOS) based method is proposed which is efficient to estimate the time delay or sample delay of the acoustic primary path as well as the electro-acoustic secondary path even in the presence of measurement noise with small data length.
机译:本文重点介绍了非因果程度对单通道有源噪声控制(ANC)系统性能的影响。结果表明,对于次要信号源(扬声器)的最佳定位,非因果度的计算很重要。同样需要重申的是,Elliot等人[1,2]发现的最大收敛系数的经验公式对于滤波x LMS算法中的使用非常重要。因此,要评估非因果程度并找出艾略特的近似收敛系数,需要先估计主路径和次路径延迟。提出了一种新颖的基于高阶统计量(HOS)的方法,即使在存在数据长度较小的测量噪声的情况下,该方法也可以有效地估计声学主路径以及电声次级路径的时间延迟或采样延迟。

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