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A New RNS 4-moduli Set for the Implementation of FIR Filters.

机译:用于FIR滤波器的新型RNS 4模数集。

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摘要

Residue number systems have gained significant importance in the field of high-speed digital signal processing due to their carry-free nature and speed-up provided by parallelism. The critical aspect in the application of RNS is the selection of the moduli set and the design of the conversion units. There have been several RNS moduli sets proposed for the implementation of digital filters. However, some are unbalanced and some do not provide the required dynamic range. This thesis addresses the drawbacks of existing RNS moduli sets and proposes a new moduli set for efficient implementation of FIR filters. An efficient VLSI implementation model has been derived for the design of a reverse converter from RNS to the conventional two's complement representation. This model facilitates the realization of a reverse converter for better performance with less hardware complexity when compared with the reverse converter designs of the existing balanced 4-moduli sets. Experimental results comparing multiply and accumulate units using RNS that are implemented using the proposed four-moduli set with the state-of-the-art balanced four-moduli sets, show large improvements in area (46%) and power (43%) reduction for various dynamic ranges. RNS FIR filters using the proposed moduli-set and existing balanced 4-moduli set are implemented in RTL and compared for chip area and power and observed 20% improvements. This thesis also presents threshold logic implementation of the reverse converter.
机译:残数系统由于其无携带特性和并行性提速而在高速数字信号处理领域中变得非常重要。 RNS应用中的关键方面是模数集的选择和转换单元的设计。提出了几种用于数字滤波器实现的RNS模数集。但是,有些不平衡,有些没有提供所需的动态范围。本文解决了现有RNS模数集的弊端,并提出了一种有效实现FIR滤波器的新模数集。已经为从RNS到传统的二进制补码表示的反向转换器的设计导出了有效的VLSI实现模型。与现有的平衡4模数集的反向转换器设计相比,该模型有助于以更好的性能实现反向转换器,并具有较低的硬件复杂性。实验结果比较了使用建议的四模数集与最新的平衡四模数集实现的使用RNS的乘法和累加单元,显示出面积(46%)和功耗(43%)的大幅降低适用于各种动态范围。在RTL中使用建议的模数集和现有的平衡4模数集的RNS FIR滤波器在RTL中实现,并比较了芯片面积和功耗,并观察到20%的改进。本文还提出了反向转换器的阈值逻辑实现。

著录项

  • 作者

    Chalivendra, Gayathri.;

  • 作者单位

    Arizona State University.;

  • 授予单位 Arizona State University.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 M.S.
  • 年度 2011
  • 页码 75 p.
  • 总页数 75
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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