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Design of low quantum cost reversible BCD adder

机译:低量子成本可逆BCD加法器设计

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摘要

Reversible logic is one of the emerging computational methodologies which assures zero power dissipation through theoretical laws of thermodynamics. It has received significant interest in application on quantum computing, nanotechnologies and low power computing devices. In this work, we present a reversible logic implementation for Binary Coded Decimal (BCD) adder which is designed to obtain lowest quantum cost value. Other parameters such as ancilla input, garbage output and delay are kept at minimal. Experiment result shows that the proposed work outperforms other designs in terms of quantum cost. Considering for a 1 digit BCD adder, it has a 4% improvement in terms of quantum cost compared to the current best existing ones. The improvement range increases as the BCD digit becomes larger.
机译:可逆逻辑是一种新兴的计算方法之一,可通过热力学的理论规律确保零功耗。它对在量子计算,纳米技术和低功率计算设备上的应用中受到了显着的兴趣。在这项工作中,我们为二进制编码十进制(BCD)加法器提供了一种可逆的逻辑实现,该加法器旨在获得最低量子成本值。其他参数如Ancilla输入,垃圾输出和延迟保持在最小。实验结果表明,拟议的工作在量子成本方面优于其他设计。考虑到1位BCD加法器,与当前最佳现有现有量相比,量子成本方面有4%的改进。随着BCD数字变大,改善范围增加。

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