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On FIR Filter Approximation of Fractional-Order Differentiators and Integrators

机译:分数阶微分器和积分器的FIR滤波器逼近

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This paper considers finite-length impulse response (FIR) filter approximation of differentiators and integrators, collectively called differintegrators. The paper introduces and compares three different FIR filter structures for this purpose, all of which are optimized in the minimax sense using iterative reweighted $ell_{1}$ -norm minimization. One of the structures is the direct-form structure, but featuring equal-valued taps and zero-valued taps, the latter corresponding to sparse filters. The other two structures comprise two subfilters in parallel and cascade, respectively. In their basic forms, nothing is gained by realizing the filters in parallel or in cascade, instead of directly. However, as the paper will show, these forms enable substantial further complexity reductions, because they comprise symmetric and antisymmetric subfilters of different orders, and also features additional equal-valued and zero-valued taps. The cascade structure employs a structurally sparse filter. The additional sparsity, as well as tap equalities, are for all three structures found automatically in the design via the $ell_{1}$ -norm minimization. Design examples included reveal feasible multiplication complexity savings of more than 50% in comparison with regular (unconstrained) direct-form structures. In addition, an example shows that the proposed designs can even have lower complexity than existing infinite-length impulse response filter designs.
机译:本文考虑了微分器和积分器(统称为微分积分器)的有限长度脉冲响应(FIR)滤波器近似。本文为此目的介绍并比较了三种不同的FIR滤波器结构,并使用迭代重新加权$ ell_ {1} $ -norm最小化对所有这些滤波器进行了极小极大优化。结构之一是直接形式结构,但具有等值抽头和零值抽头,后者对应于稀疏滤波器。另外两个结构分别包括并行和级联的两个子滤波器。在其基本形式中,通过并行或级联而不是直接实现滤波器无法获得任何收益。但是,正如本文将显示的那样,这些形式可以进一步降低复杂性,因为它们包含不同阶数的对称和反对称子滤波器,并且还具有其他等值和零值抽头。级联结构采用结构上稀疏的滤波器。额外的稀疏性和抽头相等性是通过$ ell_ {1} $ -norm最小化在设计中自动找到的所有三个结构的。包括的设计实例表明,与常规(无约束)直接形式结构相比,可行的乘法复杂性节省了50%以上。另外,一个例子表明,所提出的设计甚至比现有的无限长脉冲响应滤波器设计具有更低的复杂度。

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