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Physical network infrastructure design based on user communication patterns

机译:基于用户通信模式的物理网络基础架构设计

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In order to ensure end-to-end links between the users of communication systems, the underlying physical communication network is usually designed independently. We present two design methods for such networks that depend on a particular logical communication network among users. The designs are optimized by minimizing the average path length between logically linked users. One physical network maintains a homogeneous distribution of degrees between nodes, whereas the other network permits each node to have as many degrees as possible. The data traffic capacity of the homogeneous network is always greater than that of the heterogeneous network. Moreover, the average path length of the homogeneous network is not much larger than in the heterogeneous case. This result supports the assertion that the limitation of degree in physical communication networks to meet the physical constraints of network equipment does not act as a harmful factor in the design of communication infrastructure.
机译:为了确保通信系统用户之间的端到端链接,底层物理通信网络通常是独立设计的。我们针对此类网络提出了两种设计方法,它们依赖于用户之间的特定逻辑通信网络。通过最小化逻辑链接用户之间的平均路径长度来优化设计。一个物理网络在节点之间保持度数的均匀分布,而另一个网络则允许每个节点具有尽可能多的度数。同构网络的数据流量容量始终大于异构网络的数据流量容量。而且,同质网络的平均路径长度不比异质情况大很多。该结果支持这样的主张,即在物理通信网络中满足网络设备的物理约束的程度限制不会在通信基础设施的设计中充当有害因素。

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