A design of self reproducing hardware

M. Matsumoto, S. Hashimoto
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引用次数: 2

Abstract

This paper introduces a design method for self reproducing hardware. Self assembly or self organization is an attractive subject in a variety of research fields such as mechanics, chemistry and physics. Especially, if hardware self reproduction is realized, revolutionary changing will occur in the industrial world. Hardware self reproduction is a kind of self assembly to obtain the same kinds of hardware as the objective hardware from the simple elements automatically. It seems to us that the best case of success regarding self reproducing is the method of the deoxyribonucleic acid (DNA), that is, semiconservative replication. We, therefore, aim at developing the design method of self reproducing hardware by imitating the semiconservative replication of DNA. Based on the aspects of the semiconservative replication of DNA, we classified the interaction of the hardware and elements into three modes, namely Assembly mode, Connection mode and Division mode. We show that we can realize self reproduction of hardware by combining these three modes. To clarify the effectiveness of the proposed method, we also show the concrete examples of the self reproducing hardware. The proposed self reproduction can be realized by controlling only the temperature and stirring in the environment.
一种可自我复制的硬件设计
介绍了一种自复制硬件的设计方法。自组装或自组织在力学、化学和物理等许多研究领域都是一个有吸引力的课题。特别是,如果硬件实现自我复制,工业世界将发生革命性的变化。硬件自复制是指从简单元件中自动获得与目标硬件相同种类的硬件的一种自组装。在我们看来,自我复制的最佳成功案例是脱氧核糖核酸(DNA)的方法,即半保守复制。因此,我们旨在通过模仿DNA的半保守复制来开发自我复制硬件的设计方法。基于DNA的半保守复制方面,我们将硬件与元件的相互作用分为三种模式,即组装模式、连接模式和分裂模式。通过这三种模式的结合,我们可以实现硬件的自我复制。为了说明所提方法的有效性,我们还展示了自复制硬件的具体例子。所提出的自我复制可以通过控制环境中的温度和搅拌来实现。
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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