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A Multichannel Hierarchical Approach to Adaptive Volterra Filters Employing Filtered-X Affine Projection Algorithms

机译:采用Filtered-X仿射投影算法的自适应Volterra滤波器的多通道分层方法

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It is shown in this paper how the use of a recently introduced algebra, called V-vector algebra, can directly lead to the implementation of Volterra filters of any order P in the form of a multichannel filterbank. Each channel in this approach is modeled as a finite impulse response (FIR) filter, and the channels are hierarchically arranged according to the number of the filter coefficients. In such a way, it is also possible to devise models of reduced complexity by cutting the less relevant channels. This model is then used to derive efficient adaptation algorithms in the context of nonlinear active noise control. In particular, it is shown how the affine projection (AP) algorithms used in the linear case can be extended to a Volterra filter of any order P. The derivation of the so-called Filtered-X AP algorithms for nonlinear active noise controllers is easily obtained using the elements of the V-vector algebra. These algorithms can efficiently replace the standard LMS and NLMS algorithms usually applied in this field, especially when, in practical applications, a reduced-complexity multichannel structure can be exploited.
机译:本文显示了如何使用最近引入的代数(称为V向量代数)如何直接导致以多通道滤波器组的形式实现任意阶次P的Volterra滤波器的实现。此方法中的每个通道都被建模为有限脉冲响应(FIR)滤波器,并且根据滤波器系数的数量对通道进行分层排列。通过这种方式,还可以通过减少不太相关的渠道来设计降低复杂性的模型。然后,该模型用于在非线性主动噪声控制的情况下推导高效的自适应算法。特别是,显示了如何将线性情况下使用的仿射投影(AP)算法扩展到任何P阶的Volterra滤波器。非线性有源噪声控制器的所谓Filtered-X AP算法的推导很容易使用V向量代数的元素获得。这些算法可以有效地代替通常在该领域中应用的标准LMS和NLMS算法,尤其是在实际应用中,可以利用复杂性降低的多通道结构时。

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