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Distributed Load Balancing via Message Passing for Heterogeneous Cellular Networks

机译:通过消息传递为异构蜂窝网络进行分布式负载平衡

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This paper presents a distributed load-balancing algorithm that maximizes the network-wide sum rate in heterogeneous cellular networks (HetNets). Unlike previous studies that have considered a logarithmic utility defined with respect to the sum rate, we maximize the sum rate directly to achieve the best user association for the HetNet. To capture realistic communication scenarios, we also consider a minimum rate constraint for individual users. The corresponding problem is formulated as a combinatorial optimization of which finding the solution becomes computationally demanding as the size of the network grows. Another challenge in HetNets is that the information exchange among base stations (BSs) is limited if each tier of BSs is deployed by different network vendors or users, and this brings about the need for distributed control. To resolve these challenges, we introduce a promising approach based on a message-passing framework and derive a distributed load-balancing algorithm. The proposed algorithm developed via message passing provides a very efficient solution for the load-balancing problem with reduced computational complexity. We compare the proposed algorithm with existing load-balancing strategies. Simulation results verify that the proposed algorithm significantly improves resource utilization and mitigates the congestion of macro BSs, thereby resulting in a multifold gain to the sum rate.
机译:本文提出了一种分布式负载平衡算法,该算法可以最大程度地提高异构蜂窝网络(HetNets)中的网络范围内的总速率。与先前的研究考虑了对总比率定义的对数效用不同,我们直接将总比率最大化以实现HetNet的最佳用户关联。为了捕获现实的通信场景,我们还考虑了单个用户的最低速率限制。相应的问题被表述为组合优化,随着网络规模的增长,寻找解决方案对计算的要求越来越高。 HetNets中的另一个挑战是,如果每个BS层由不同的网络供应商或用户部署,则基站(BS)之间的信息交换将受到限制,这带来了对分布式控制的需求。为了解决这些挑战,我们介绍了一种基于消息传递框架的有前途的方法,并推导了分布式负载平衡算法。通过消息传递开发的拟议算法为负载均衡问题提供了一种非常有效的解决方案,并且降低了计算复杂度。我们将提出的算法与现有的负载平衡策略进行了比较。仿真结果表明,该算法显着提高了资源利用率,减轻了宏基站的拥塞,从而使总和率提高了几倍。

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