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src='/images/tex/28309.gif' alt='2^n'> RNS Scalers for Extended 4-Moduli Sets

机译: src =“ / images / tex / 28309.gif” alt =“ 2 ^ n”> 用于扩展4模集的RNS缩放器

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Scaling is a key important arithmetic operation and is difficult to perform in Residue Number Systems (RNS). This paper proposes a comprehensive approach for designing efficient and accurate RNS scalers for important classes of moduli sets that have large dynamic ranges. These classes include the traditional 3-moduli set, but the exponent of the power of two modulo is augmented by a variable value (), and any extended set with an additional modulo (). The proposed approach embeds scaling into the formulation of the Chinese remainder theorem and the mixed radix system, and it exploits the properties of the target moduli sets to perform scaling explicitly in the RNS domain. This is accomplished by operating hierarchically on each channel without requiring reverse and forward conversions. Simple memoryless VLSI architectures are proposed based on the obtained formulations. The relative assessment indicates that not only are these architectures comprehensive and suitable for configurable systems, but they are also more efficient than the related state of the art in- terms of both performance and energy. The experimental results obtained for a 90 nm CMOS ASIC technology show improvements in the area-delay product, normalized with respect to the dynamic range, of up to and percent with the proposed scalers for the augmented 3-moduli set (dynamic range of bits) and an extended 4-moduli set (dynamic range of bits), respectively. These improvements increase to and percent when the energy required per scaling is measured. The proposed scalers are not only flexible and cost-effective, but they are also suitable for designing and implementing energy-constrained devices, particularly mobile systems.
机译:标度是重要的重要算术运算,很难在残数系统(RNS)中执行。本文提出了一种用于为动态范围较大的重要模数集设计高效,准确的RNS定标器的综合方法。这些类包括传统的3模集,但两个模的幂的指数通过变量值()以及任何扩展集带有附加模数()来扩展。所提出的方法将缩放比例嵌入了中国余数定理和混合基数系统的公式,并利用目标模集的属性在RNS域中显式执行缩放比例。这是通过在每个通道上分层操作而不需要反向和正向转换来完成的。基于获得的公式,提出了简单的无内存VLSI架构。相关评估表明,这些架构不仅全面且适用于可配置系统,而且在性能和能耗方面也比相关的现有技术要高。对于90 nm CMOS ASIC技术获得的实验结果表明,相对于动态范围进行标准化的面积延迟乘积的改进达到了建议的扩展3模数集缩放器(位的动态范围)的百分比。和扩展的4模数集(位的动态范围)。当测量每个缩放所需的能量时,这些改进将增加50%,甚至增加百分比。所提出的缩放器不仅灵活且具有成本效益,而且还适合设计和实现能耗受限的设备,特别是移动系统。

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