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Design of efficient architectures for 1-D and 2-D DLMS adaptive filters

机译:一维和二维DLMS自适应滤波器的有效架构设计

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摘要

This paper presents a design of systolic array architectures for 1-D and 2-D finite impulse response adaptive filters. The design is based on the delayed least mean squares algorithm (DLMS). Two designs have been proposed and their performance is analyzed in terms of speed up, adaptation delay and throughput. The second realization results in a lowest critical period equal to one multiply operation time and a higher throughput. Unlike the existing architectures the adaptation delay of this design is independent of the filter length and has a higher speedup. It is shown that the convergence performance of this design is in par with the conventional LMS algorithm.
机译:本文提出了一种针对一维和二维有限冲激响应自适应滤波器的脉动阵列架构的设计。该设计基于延迟最小均方算法(DLMS)。已经提出了两种设计,并从速度,自适应延迟和吞吐量方面分析了它们的性能。第二种实现导致最低的临界周期等于一个乘法运算时间和更高的吞吐量。与现有架构不同,该设计的自适应延迟与滤波器长度无关,并且具有更高的加速比。结果表明,该设计的收敛性能与常规LMS算法相当。

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