Synthesis of Reversible Synchronous Counters

Mozammel H. A. Khan, M. Perkowski
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引用次数: 27

Abstract

Reversible logic is very important in low-power circuit design and quantum computing. Though a significant number of works has been done on reversible combinational logic synthesis, only few papers have been published on reversible sequential logic synthesis and per mutative quantum automata. The reported works on reversible sequential logic discuss designs of reversible flip-flops and suggest synthesizing reversible sequential circuits by replacing the flip-flops and combinational parts of traditional sequential circuit designs by their reversible counterparts. In this paper, we discuss direct design of reversible synchronous counters based on positive polarity Reed-Muller expressions. Design results show that the direct design method is more efficient than the replacement method. The method can be also applied to per mutative quantum automata that have quantum memories external to the circuit.
可逆同步计数器的合成
可逆逻辑在低功耗电路设计和量子计算中非常重要。虽然在可逆组合逻辑综合方面已经做了大量的工作,但在可逆顺序逻辑综合和每变量子自动机方面的论文却很少。在可逆顺序逻辑的研究中,讨论了可逆触发器的设计,并提出用可逆触发器和组合部件代替传统顺序电路设计中的触发器和组合部件来合成可逆顺序电路。本文讨论了基于正极性Reed-Muller表达式的可逆同步计数器的直接设计。设计结果表明,直接设计法比置换法更有效。该方法也可应用于在电路外部具有量子存储器的单突变量子自动机。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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