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Design of residue generators and multioperand modular adders using carry-save adders

机译:使用进位保存加法器设计残差发生器和多操作数模块化加法器

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Residue generator is an essential building block of encoding/decoding circuitry for arithmetic error detecting codes and binary-to-residue number system (RNS) converter. In either case, a residue generator is an overhead for a system and as such it should be built with minimum amount of hardware and should not compromise the speed of a system. Multioperand modular adder (MOMA) is a computational element used to implement various operations in digital signal processing systems using RNS. A comprehensive study of new residue generators and MOMA's is presented. The design methods given here take advantage of the periodicity of the series of powers of 2 taken module A (A is a module). Four design schemes of the n-input residue generators mod A, which are best suited for various pairs of n and A, are proposed. Their pipelined versions can be clocked with the cycle determined by the delay of a full-adder and a latch. A family of design methods for parallel and word-serial, using similar concepts, is also given. Both classes of circuits employ new highly-parallel schemes using carry-save adders with end-around carry and a minimal amount of ROM and are well-suited for VLSI implementation. They are faster and use less hardware than similar circuits known to date. One of the MOMA's can be used to build a high-speed residue-to-binary converter based on the Chinese remainder theorem.
机译:残差发生器是用于算术错误检测代码和二进制至残数系统(RNS)转换器的编码/解码电路的基本构建块。在任何一种情况下,残留物生成器都是系统的开销,因此,残留物生成器应使用最少的硬件构建,并且不应损害系统的速度。多操作数模块化加法器(MOMA)是一种计算元素,用于在使用RNS的数字信号处理系统中实现各种操作。介绍了新的残渣发生器和MOMA的综合研究。此处给出的设计方法利用了2个取下的模块A(A是一个模块)的幂次幂的周期性。提出了四种最适合于n和A的不同对的n输入残差生成器mod A的四种设计方案。它们的流水线版本可以用由全加器和锁存器的延迟确定的周期来计时。还给出了使用相似概念的并行和字串行设计方法系列。这两类电路均采用新的高度并行方案,该方案使用带有末尾进位和最小数量ROM的进位保存加法器,非常适合VLSI实现。与迄今为止已知的类似电路相比,它们更快并且使用的硬件更少。 MOMA之一可用于基于中国余数定理构建高速残差二进制转换器。

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