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Forward and Reverse Converters and Moduli Set Selection in Signed-Digit Residue Number Systems

机译:正负号残数系统中的正反向转换器和模集选择

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This paper presents an investigation into using a combination of two alternative digital number representations; the residue number system (RNS) and the signed-digit (SD) number representation in digital arithmetic circuits. The combined number system is called RNS/SD for short. Since the performance of RNS/SD arithmetic circuits depends on the choice of the moduli set (a set of pairwise prime numbers), the purpose of this work is to compare RNS/SD number systems based on different sets. Five specific moduli sets of different lengths are selected. Moduli-set-specific forward and reverse RNS/SD converters are introduced for each of these sets. A generic conversion technique for moduli sets consisting of any number of elements is also presented. Finite impulse response (FIR) filters are used as reference designs in order to evaluate the performance of RNS/SD processing. The designs are evaluated with respect to delay and circuit area in a commercial 0.13 μm CMOS process. For the case of FIR filters it is shown that generic moduli sets with five or six moduli results in designs with the best area × delay products.
机译:本文提出了对结合使用两种替代数字表示形式的研究。数字算术电路中的残差号系统(RNS)和带符号的数字(SD)表示。组合数字系统简称为RNS / SD。由于RNS / SD算术电路的性能取决于模数集(成对质数集)的选择,所以这项工作的目的是比较基于不同集的RNS / SD数系。选择五个不同长度的特定模数集。针对这些模块中的每组引入了特定于模块集的正向和反向RNS / SD转换器。还提出了一种由任意数量的元素组成的模数集的通用转换技术。有限冲激响应(FIR)滤波器用作参考设计,以评估RNS / SD处理的性能。针对商用0.13μmCMOS工艺中的延迟和电路面积对设计进行评估。对于FIR滤波器,结果表明具有5或6个模数的通用模数集可产生具有最佳面积×延迟积的设计。

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