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首页> 外文期刊>AEU: Archiv fur Elektronik und Ubertragungstechnik: Electronic and Communication >Optimum number of gateways for cluster-based two-hop cellular networks
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Optimum number of gateways for cluster-based two-hop cellular networks

机译:基于集群的两跳蜂窝网络的最佳网关数量

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An ever increasing number of mobile users combined with an increase in the demand for data rates has led researchers to explore the feasibility of multihop cellular networks. However, due to the NP-hard complexity in resource allocation and scheduling techniques in a multihop cellular network, the focus of multihop cellular design is mostly restricted to two-hop. In this work, we analyze the capacity of a cluster-based hierarchical two-hop multi-cellular network, with a frequency reuse of one. We prove mathematically that when there are six cells surrounding the center cell, and the number of simultaneous communicating pairs in all the six cells are same, there are six distinct locations in any cell where the link capacity reaches its maximum and six distinct locations where the link capacity reaches its minimum. Significantly, all these twelve points are equidistant. Similarly, we observe that if a cell is surrounded by four cells such that all the base stations (BSs) of the adjacent cells are equidistant from the BS of the center cell, then the number of locations where the capacity is maximum or minimum is found to be exactly four each. This provides an insight on the exact number and the location where the gateways should be placed in a hierarchical cellular architecture in order to maximize the system capacity in a multi-cellular environment. In addition, for a hexagonal geometry, when the number of simultaneously communicating pairs are different in different adjacent cells, the optimum number of gateways per cell that maximizes the system capacity for all the cases is not a fixed number, but varies between a minimum value of one and a maximum value of six, depending on the number of cells which has two simultaneously communication pairs.
机译:越来越多的移动用户以及对数据速率的需求的增长促使研究人员探索多跳蜂窝网络的可行性。但是,由于多跳蜂窝网络中资源分配和调度技术中的NP-hard复杂性,多跳蜂窝设计的重点大多限于两跳。在这项工作中,我们分析了基于群集的分层两跳多蜂窝网络的容量,其中频率复用为一。我们用数学方法证明,当中心单元周围有六个单元,并且所有六个单元中的同时通信对的数量相同时,任何一个单元中都有六个不同的位置,链路容量达到最大值,而六个不同的位置链路容量达到最小值。显然,所有这十二个点都是等距的。类似地,我们观察到,如果一个小区被四个小区包围,从而相邻小区的所有基站(BS)与中心小区的BS等距,则可以找到容量最大或最小的位置数分别是四个这样可以洞悉网关应放置在分层蜂窝体系结构中的确切数量和位置,以便在多蜂窝环境中最大化系统容量。另外,对于六边形几何形状,当不同相邻小区中同时通信对的数量不同时,使所有情况下系统容量最大化的每个小区的最佳网关数量不是固定的,而是在最小值之间变化。取决于具有两个同时通信对的小区的数量,最大值为1,最大值为6。

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