Voronoi Structure of Space Integration with an Applied Roundabout Network - Part II

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Abstract

The dual Delaunay graph of Voronoi network unfolds into various geometric and topological properties of intangible space structure. Specifically, objective space integration of Delaunay layout determines the parameters of universal distance, distributiveness, geometric moments and traversable properties with their correlation in a single graph network. The pilot application on the network of roundabout Cairo defines the original space integrity for future conservation. The resultant analysis satisfies the hamiltonian circuiting with the highest layout integration of generator-9 in correlative measurements. On the contrary, the least integral generator-13 maintains the close ties with the adjacent generator-14 of better layout connectivity in compensation. Nevertheless, the core generators 3 & 4 of the layout form a dense overlapping circumcircle in correlation to cyclic graph minors, which boosts the global system integration. Future overview on computational Delaunay-graph of programmable network properties amalgamates a robust integral structure of space in prospective virtual reality with artificial intelligence.
应用环岛网络的空间整合 Voronoi 结构 - 第二部分
Voronoi 网络的对偶 Delaunay 图展现了无形空间结构的各种几何和拓扑特性。具体来说,德劳内布局的客观空间整合确定了通用距离、分布性、几何矩和可穿越特性等参数,以及它们在单一图形网络中的相关性。在开罗环岛网络上的试点应用确定了原始空间的完整性,以便今后进行保护。分析结果满足哈密顿循环,在相关测量中生成器-9 的布局积分最高。相反,积分最小的发电机-13 与相邻的发电机-14 保持着密切的联系,在补偿中具有更好的布局连通性。然而,布局的核心生成器 3 和 4 与循环图最小值相关,形成了密集重叠的圆周,从而提高了全局系统集成。未来对可编程网络属性的计算德劳内图的概述,将前瞻性虚拟现实与人工智能相结合,形成了一个强大的整体空间结构。
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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