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Network Utility Aware Traffic Load Balancing in Backhaul-Constrained Cache-Enabled Small Cell Networks with Hybrid Power Supplies

机译:在具有混合电源的回程受限缓存启用小蜂窝网络中,网络实用程序可感知流量负载平衡

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Explosive data traffic growth leads to a continuous surge in capacity demands across mobile networks. In order to provision high network capacity, small cell base stations (SCBSs) are widely deployed. Owing to the close proximity to mobile users, SCBSs can effectively enhance the network capacity and offloading traffic load from macro BSs (MBSs). However, the cost-effective backhaul may not be readily available for SCBSs, thus leading to backhaul constraints in small cell networks (SCNs). Enabling cache in BSs may mitigate the backhaul constraints in SCNs. Moreover, the dense deployment of SCBSs may incur excessive energy consumption. To alleviate brown power consumption, renewable energy will be explored to power BSs. In such a network, it is challenging to dynamically balance traffic load among BSs to optimize the network utilities. In this paper, we investigate the traffic load balancing in backhaul-constrained cache-enabled small cell networks powered by hybrid energy sources. We have proposed a network utility aware (NUA) traffic load balancing scheme that optimizes user association to strike a tradeoff between the green power utilization and the traffic delivery latency. On balancing the traffic load, the proposed NUA traffic load balancing scheme considers the green power utilization, the traffic delivery latency in both BSs and their backhaul, and the cache hit ratio. The NUA traffic load balancing scheme allows dynamically adjusting the tradeoff between the green power utilization and the traffic delivery latency. We have proved the convergence and the optimality of the proposed NUA traffic load balancing scheme. Through extensive simulations, we have compared performance of the NUA traffic load balancing scheme with other schemes and showed its advantages in backhaul-constrained cache-enabled small cell networks with hybrid power supplies.
机译:爆炸性的数据流量增长导致整个移动网络的容量需求持续增长。为了提供高网络容量,广泛部署了小型小区基站(SCBS)。由于靠近移动用户,SCBS可以有效地增强网络容量,并减轻宏BS(MBS)的流量负担。但是,具有成本效益的回程可能不适用于SCBS,因此导致小型小区网络(SCN)中的回程限制。在BS中启用缓存可以减轻SCN中的回程约束。此外,SCBS的密集部署可能会导致过多的能耗。为了减轻棕色电力的消耗,将探索可再生能源为基站供电。在这样的网络中,动态地平衡BS之间的业务负载以优化网络实用程序具有挑战性。在本文中,我们研究了由混合能源驱动的回程受限缓存启用小蜂窝网络中的流量负载平衡。我们已经提出了一种网络实用程序感知(NUA)流量负载平衡方案,该方案可优化用户关联以在绿色电源利用率和流量传递延迟之间进行权衡。在平衡流量负载时,拟议的NUA流量负载平衡方案考虑了绿色电源利用率,两个BS及其回程中的流量传送延迟以及缓存命中率。 NUA流量负载平衡方案允许动态调整绿色电源利用率和流量交付延迟之间的折衷。我们已经证明了所提出的NUA流量负载均衡方案的收敛性和最优性。通过广泛的仿真,我们将NUA流量负载平衡方案的性能与其他方案进行了比较,并显示了其在回程受限,具有混合电源的高速缓存小蜂窝网络中的优势。

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