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The Optical Chained-Cubic Tree interconnection network: Topological structure and properties

机译:光链立方树互连网络:拓扑结构和属性

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Interconnection networks with optical communication links outperform others using electronic communication links when the distance is long in terms of speed and power consumption. However, for short distances, electronic network topologies are preferred due to lower material cost requirements. As a result, hybrid network topologies were constructed to combine the benefits of both types of network topologies, such as Optical Transpose Interconnection System (OTIS). This paper presents a new hybrid interconnection network topology, which is constructed using both optical and electronic links, called the Optical Chained-Cubic Tree (OCCT). This new OCCT topology is based on the Chained-Cubic Tree (CCT) interconnection network and is designed to cope with both types of binary trees; full and complete. Also, the topological properties of OCCT in terms of diameter, connectivity, degree, bisection width, and cost are presented and compared with OTIS-Mesh and CCT interconnection networks.
机译:当在速度和功耗方面距离较长时,具有光通信链路的互连网络的性能优于使用电子通信链路的互连网络。但是,对于短距离,由于较低的材料成本要求,因此首选电子网络拓扑。结果,混合网络拓扑结构得以构建,以结合两种类型的网络拓扑结构(例如光传输互连系统(OTIS))的优势。本文介绍了一种新的混合互连网络拓扑,该拓扑使用光链路和电子链路构建,称为光链立方树(OCCT)。这种新的OCCT拓扑基于链式立方树(CCT)互连网络,旨在处理两种类型的二进制树。完整而完整。此外,还介绍了OCCT的直径,连通性,程度,对等宽度和成本方面的拓扑特性,并与OTIS-Mesh和CCT互连网络进行了比较。

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