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Approach to design a compact reversible low power binary comparator

机译:设计紧凑型可逆低功耗二进制比较器的方法

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Reversible logic has captured significant attention in recent time as reducing power consumption is the main concern of digital logic design. It consumes less power by recovering bit loss from its unique input-output mapping. In this study, the authors propose a reversible low power n-bit binary comparator. An algorithm is presented for constructing a compact reversible n-bit binary comparator circuit. The authors also propose two new reversible gates, namely, Babu-Jamal-Saleheen (BJS) and Hasan-Lafifa-Nazir (HLN) gates, to optimise the comparator. In addition, several theorems on the numbers of gates, garbage outputs, quantum cost, ancilla input, power, delay and area of the reversible n-bit comparator have been presented. The simulation results of the proposed comparator show that the circuit works correctly and gives significantly better performance than the existing ones. The comparative study shows that, as an example, for a 64-bit comparator, the proposed design achieves the improvement of 24.4% in terms of number of gates, 19.9% in terms of garbage outputs, 7.7% in terms of quantum cost, 25.77% in terms of area and 3.43% in terms of power over the existing best one. Area and power analysis also show that the proposed design is the most compact as well as a low power circuit.
机译:由于降低功耗是数字逻辑设计的主要关注点,可逆逻辑最近引起了广泛的关注。通过从其独特的输入-输出映射中恢复比特损失,它消耗的功率更少。在这项研究中,作者提出了一种可逆的低功耗n位二进制比较器。提出了一种用于构建紧凑型可逆n位二进制比较器电路的算法。作者还提出了两个新的可逆门,即Babu-Jamal-Saleheen(BJS)和Hasan-Lafifa-Nazir(HLN)门,以优化比较器。此外,提出了关于可逆n位比较器的门数,垃圾输出,量子成本,辅助输入,功率,延迟和面积的几个定理。所提出的比较器的仿真结果表明,该电路可以正常工作,并且比现有电路具有更好的性能。比较研究表明,以一个64位比较器为例,所提出的设计在门数方面提高了24.4%,在垃圾输出方面提高了19.9%,在量子成本方面提高了7.7%。25.77在面积上占比最高,在现有最佳功率上占比3.43%。面积和功耗分析还表明,所提出的设计是最紧凑的,也是一种低功耗电路。

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