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Design and Implementation of High-Speed All-Pass Transformation-Based Variable Digital Filters by Breaking the Dependence of Operating Frequency on Filter Order

机译:打破工作频率对滤波器阶次的依赖关系的基于高速全通变换的可变数字滤波器的设计与实现

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All-pass transformation (APT)-based variable digital filters (VDFs), also known as frequency warped VDFs, are typically used in various audio signal-processing applications. In an APT-based VDF, all-pass filter structures of appropriate order are used to replace the delay elements in a prototype filter structure. The resultant filter can provide variable frequency responses with unabridged control over cutoff frequencies on the fly, without updating the filter coefficients. In this brief, we briefly review the first- and second-order APT-based VDFs along with their hardware implementation architectures, and provide generalized design procedures to realize them as per required specifications. We also propose the modified pipelined hardware implementation architectures for both the first- and second-order APT-based VDFs. Field-programmable gate array implementation results of different first- and second-order APT-based VDF designs for both nonpipelined and pipelined implementation architectures are presented. An analysis of the results shows that the proposed pipelined implementation architectures result in high-speed VDFs, achieving high operating frequencies that are independent of the prototype filter order, for both the first- and second-order APT-based VDF designs.
机译:基于全通变换(APT)的可变数字滤波器(VDF),也称为频率扭曲VDF,通常用于各种音频信号处理应用中。在基于APT的VDF中,适当顺序的全通滤波器结构用于替换原型滤波器结构中的延迟元件。所得的滤波器可以在不更新滤波器系数的情况下提供可变频率响应,并且可以对飞行中的截止频率进行无限制的控制。在本简介中,我们简要回顾了基于APT的一阶和二阶VDF及其硬件实现体系结构,并提供了通用的设计过程以根据所需规范实现它们。我们还针对基于APT的一阶和二阶VDF提出了改进的流水线硬件实现体系结构。给出了针对非流水线和流水线实施架构的不同基于一阶和二阶APT的VDF设计的现场可编程门阵列实施结果。结果分析表明,对于基于APT的一阶和二阶VDF设计,所提出的流水线实施架构可产生高速VDF,实现了与原型滤波器阶次无关的高工作频率。

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