协调无线回程网络的多目标邻接矩阵优化

C. Mannweiler, Pratip Chakraborty, H. Schotten
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引用次数: 3

摘要

协调的无线点对点网络是一种可靠且经济高效的技术,可为偏远或拓扑结构具有挑战性的环境(例如山区)中的接入网提供回程连接。其灵活性允许与任何类型的接入网(包括蜂窝)、临时或移动部署(例如,用于体育或娱乐活动)或有线回程基础设施的成熟替代方案联合操作。本文介绍了一种基于网络总容量、接入网电流负载、所考虑的拓扑能耗、无连续供电节点的电池电量以及从用户角度考虑吞吐量分配的公平性等一系列相关参数对这种协同回程点对点网络拓扑进行优化的新方法。我们扩展了回程拓扑优化(BTO)算法,利用给定的异构数据来生成最优的回程拓扑。我们表明,与标准参考情况相比,我们的算法将这种回程网络的生命周期延长了20%,同时适度提高了吞吐量分配的公平性。
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Multi-objective adjacency matrix optimization for coordinated wireless backhaul networks
Coordinated wireless point-to-point networks constitute a reliable and cost-efficient technology for providing backhaul connectivity for access networks in remote or topologically challenging environments, e.g. mountainous regions. Their flexibility allows for joint operation with any kind of access networks (including cellular), temporary or mobile deployment (e.g., for sport or entertainment events), or for full-fledged alternative of wired backhaul infrastructure. This paper introduces a novel approach for optimizing the topology of such coordinated backhaul point-to-point networks based on a range of relevant parameters, among them total network capacity, current load in the access network, energy consumption of the considered topology, battery level of nodes without continuous power supply, as well as fairness of throughput allocation from user perspective. We extend our Backhaul Topology Optimization (BTO) algorithm by exploiting the given heterogeneous data to generate an optimal backhaul topology. We show that our algorithm extends the lifetime of such a backhaul network by up to 20% compared to a standard reference case while at the same time modestly improving the fairness of throughput distribution.
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