RECONFIGURABLE NEWTON STRUCTURE FOR SAMPLE RATE CONVERSION

A. Zeineddine, S. Paquelet, M. Kanj, C. Moy, A. Nafkha, P. Jezequel
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引用次数: 5

Abstract

In this paper, a novel method for designing reconfigurable Newton structure is proposed. The Newton structure is a variable fractional delay filter that implements Lagrange interpolation only. This structure has been extended later in the literature to implement other types of interpolation, such as Spline and Hermite interpolations. Our proposed method develops dynamically reconfigurable Newton structures that allow implementing different interpolation methods using the same fixed hardware implementation. This method allows reconfigurability through one input variable. Moreover, we present two sample rate conversion examples where we show how our method allows adapting the interpolation method to the processed signal, maximizing thereby the filtering performance.
可重构牛顿结构的采样率转换
提出了一种设计可重构牛顿结构的新方法。牛顿结构是一个可变分数延迟滤波器,只实现拉格朗日插值。这个结构在后来的文献中被扩展以实现其他类型的插值,如样条插值和埃尔米特插值。我们提出的方法开发了动态可重构的牛顿结构,允许使用相同的固定硬件实现实现不同的插值方法。这种方法允许通过一个输入变量进行重新配置。此外,我们还提供了两个采样率转换示例,其中我们展示了我们的方法如何允许将插值方法适应处理过的信号,从而最大化滤波性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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