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Reversible Computing Systems, Logic Circuits, and Cellular Automata

机译:可逆计算系统,逻辑电路和元胞自动机

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Reversible computing is a paradigm of computation that reflects physical reversibility, and will become important when we develop future computing systems that directly utilize microscopic physical phenomena for logical operations. In this survey we discuss, from a theoretical point of view, how a reversible computer is implemented as a reversible logic circuit, how a reversible logic circuit is composed of reversible logic elements, and how a reversible logic element can be realized in a physically reversible system. We shall see that, in spite of the constraint of reversibility, universal reversible computers can be constructed by very simple reversible primitives, and that in these systems computation is often carried out in a very unique and different manner from conventional computing systems.
机译:可逆计算是反映物理可逆性的一种计算范式,在我们开发直接将微观物理现象用于逻辑运算的未来计算系统时,可逆计算将变得非常重要。在本次调查中,我们将从理论的角度讨论如何将可逆计算机实现为可逆逻辑电路,如何将可逆逻辑电路由可逆逻辑元素组成以及如何在物理可逆中实现可逆逻辑元素系统。我们将看到,尽管可逆性受到限制,但通用可逆计算机仍可以由非常简单的可逆基元构造而成,并且在这些系统中,计算通常以与常规计算系统非常独特且不同的方式进行。

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