Dynamically reconfigurable FIR filter architectures with fast reconfiguration

M. Kumm, Konrad Möller, P. Zipf
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引用次数: 43

Abstract

This work compares two finite impulse response (FIR) filter architectures for FPGAs for which the coefficients can be reconfigured during run-time. One is a recently proposed filter architecture based on distributed arithmetic (DA) and the other is based on a LUT multiplication scheme. Instead of using the common internal configuration access port (ICAP) for reconfiguration which is able to change the logic as well as the routing, it is sufficient to reconfigure only the logic in the regarded architectures. This is realized by using the configurable look-up table (CFGLUT) primitive of Xilinx that allows reconfiguration times which are orders of magnitudes faster than using ICAP. The resulting FIR filter architectures achieves reconfiguration times of typically less than 100 ns. They can be reconfigured with arbitrary coefficients that are only limited by their length and word size. As their resource consumptions depend on different parameters of the filter, a detailed comparison is done. It turned out that if the input word size is greater than approximately half the number of coefficients, the LUT based multiplication scheme needs less resources than the DA architecture and vice versa.
动态可重构FIR滤波器架构与快速重构
这项工作比较了两种用于fpga的有限脉冲响应(FIR)滤波器架构,其系数可以在运行时重新配置。一种是最近提出的基于分布式算法(DA)的滤波器体系结构,另一种是基于LUT乘法方案。代替使用公共内部配置访问端口(ICAP)进行重新配置,它能够改变逻辑和路由,只重新配置所考虑的体系结构中的逻辑就足够了。这是通过使用Xilinx的可配置查找表(CFGLUT)原语实现的,它允许重新配置的时间比使用ICAP快几个数量级。由此产生的FIR滤波器架构实现了通常小于100 ns的重新配置时间。它们可以用任意系数重新配置,这些系数仅受其长度和单词大小的限制。由于它们的资源消耗取决于过滤器的不同参数,因此进行了详细的比较。事实证明,如果输入的单词大小大于大约一半的系数数,那么基于LUT的乘法方案需要的资源比DA体系结构少,反之亦然。
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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