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Effects of Imperfect Secondary Path Modeling on Adaptive Active Noise Control Systems

机译:不完善的次级路径建模对自适应主动噪声控制系统的影响

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Implementation of adaptive active noise control (ANC) systems requires an estimate model of the secondary path to be uploaded onto digital control hardware. In practice, this model is not necessarily perfect; however, to avoid mathematical difficulties, theoretical analysis of these systems is usually conducted for a perfect secondary path model. This paper conducts a stochastic analysis on performance of Filtered-x LMS (FxLMS)-based ANC systems when the actual secondary path and its model are not identical. This analysis results in a number of mathematical expressions, describing effects of a general secondary path model on stability, steady-state performance and convergence speed of FxLMS-based ANC systems. As a surprising result, it is found that intentional misadjustment of secondary path models can enhance performance of ANC systems in practice. Theoretical results are found to be in a good agreement with the results obtained from numerical analysis. Also, experimental results confirm the validity and accuracy of the theoretical results.
机译:自适应主动噪声控制(ANC)系统的实现要求将次级路径的估计模型上载到数字控制硬件上。实际上,该模型不一定是完美的。但是,为了避免数学上的困难,通常对这些系统进行理论分析以建立理想的次级路径模型。当实际的次级路径及其模型不相同时,本文对基于Filtered-x LMS(FxLMS)的ANC系统的性能进行了随机分析。该分析得出了许多数学表达式,它们描述了通用辅助路径模型对基于FxLMS的ANC系统的稳定性,稳态性能和收敛速度的影响。令人惊讶的结果是,发现次级路径模型的故意失调可以在实践中增强ANC系统的性能。理论结果与数值分析结果吻合良好。而且,实验结果证实了理论结果的有效性和准确性。

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