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New “Graphiton” Model: a Computational Discrete Space, Self-Encoded as a Trivalent Graph

机译:新的“ Graphiton”模型:计算离散空间,自编码为三价图

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The new graphiton models described here are trivalent graphs which encode topologically binary information. They permit defining intrinsic discrete spaces which constitute supernode crystals. Besides encoding its own metric, the model supports disturbances due to fault tolerance through the redundancy of information in the paths of connection between supernodes. Coming from theoretical physics, they may find applications in network management and artificial intelligence. For the first time, an information system structure, rich enough to model the universe itself, but relying ultimately on set theory, traverses set theory, topology, information theory, graph theory, geometry, algebra, theoretical physics and even computer and network science, in a logical straightforward and elegant way.
机译:此处描述的新石墨烯模型是对拓扑二进制信息进行编码的三价图。它们允许定义构成超节点晶体的固有离散空间。除了对自己的度量进行编码之外,该模型还通过超节点之间的连接路径中的信息冗余来支持由于容错导致的干扰。他们来自理论物理学,可以在网络管理和人工智能中找到应用。信息系统结构首次具有足够的能力来模拟宇宙本身,但最终还是依赖于集合论,遍历集合论,拓扑,信息论,图论,几何学,代数,理论物理学乃至计算机和网络科学,以合乎逻辑的简单明了的方式。

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