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An Efficient Implementation of the Delay Compensation for Sub-Band Filtered-x Least-Mean-Square Algorithm

机译:子带滤波x最小均方算法的延迟补偿的有效实现

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The sub-band filtered-x least-mean-square algorithm used in the active control of noise and vibration suffers from reduced stability bounds due to the error-path delay. The error-path delay results from both the secondary path and the analysis filter bank. To restore the stability bounds, a method has been suggested, whereby the delay is compensated. However, this results in an increased computational complexity. In this brief, we derive an efficient implementation of the error-path delay compensation that results in substantial computational saving.
机译:由于误差路径延迟,用于噪声和振动的主动控制的子带滤波x最小均方算法的稳定性下降。误差路径延迟是由辅助路径和分析滤波器组引起的。为了恢复稳定性界限,已经提出了一种方法,由此补偿了延迟。但是,这导致计算复杂性增加。在本简介中,我们推导了误差路径延迟补偿的有效实现方式,可节省大量计算量。

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