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Exploiting reversible logic design for implementing adiabatic circuits

机译:利用可逆逻辑设计实现绝热电路

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Today, energy saving is a major design target, since the number of mobile-or power-independent devices is increasing. These devices should operate as long as possible with one battery charge. Especially for designs where speed is of secondary importance, adiabatic circuits are a promising alternative. These kind of circuits are rather slow but extremely energy efficient. However, the full potential of adiabatic circuits can only be fully exploited if computations are conducted in a reversible fashion. This is not the case for conventional circuits which are usually composed of non-reversible gates such as AND, OR, etc. At the same time, design methods for so-called reversible circuits received significant interest — mainly motivated by emerging technologies such as quantum computation or encoder design. In this work, we exploit the accomplishments of these complementary areas and, realize fully reversible adiabatic circuits. Experimental evaluations show that this yields circuits which have a substantially smaller power consumption than conventional circuit technologies.
机译:如今,节能是主要的设计目标,因为与移动或电源无关的设备数量正在增加。这些设备应在充满一次电池的情况下尽可能长时间地工作。特别是对于速度至关重要的设计,绝热电路是一个有前途的选择。这种电路速度较慢,但​​是非常节能。但是,只有以可逆方式进行计算时,才能充分利用绝热电路的全部潜力。对于通常由不可逆门(例如AND,OR等)组成的常规电路而言,情况并非如此。与此同时,所谓可逆电路的设计方法引起了人们的极大兴趣,这主要是受新兴技术(例如量子技术)的推动计算或编码器设计。在这项工作中,我们利用这些互补领域的成就,实现了完全可逆的绝热回路。实验评估表明,与传统电路技术相比,这种电路产生的功耗要小得多。

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