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All-in-One: Space-Time Body, Function and Metric: A Fundamentally New Approach to Computation

机译:多合一:时空主体,功能和指标:一种全新的计算方法

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Every algorithm which can be executed on a computer can at least in principle be realized in hardware, i.e. by a discrete physical system. The problem is that up to now there is no programming language by which physical systems can constructively be described. Such tool, however, is essential for the compact description and automatic production of complex systems. This paper introduces a programming language, called Akton-Algebra, which provides the foundation for the complete description of discrete physical systems. The approach originates from the finding that every discrete physical system reduces to a spatiotemporal topological network of nodes, if the functional and metric properties are deleted. A next finding is that there exists a homeomorphism between the topological network and a sequence of symbols representing a program by which the original nodal network can be reconstructed. Providing Akton-Algebra with functionality turns it into a flow-controlled general data processing language, which by introducing clock control and addressing can be further transformed into a classical programming language. Providing Akton-Algebra with metrics, i.e. the shape and size of the components, turns it into a novel hardware system construction language.
机译:可以在计算机上执行的每种算法至少在原则上可以以硬件,即通过离散的物理系统来实现。问题在于,到目前为止,还没有编程语言可以构造性地描述物理系统。但是,这种工具对于紧凑描述和自动生成复杂系统至关重要。本文介绍了一种称为Akton-Algebra的编程语言,该语言为完整描述离散物理系统提供了基础。该方法源于以下发现:如果功能和度量属性被删除,则每个离散的物理系统都将简化为节点的时空拓扑网络。下一个发现是,在拓扑网络和表示程序的符号序列之间存在同胚,通过该程序可以重构原始节点网络。通过为Akton-Algebra提供功能,可以将其转变为流控制的通用数据处理语言,通过引入时钟控制和寻址,可以将其进一步转换为经典的编程语言。向Akton-Algebra提供度量,即组件的形状和大小,将其转变为一种新颖的硬件系统构造语言。

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