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Optimal energy-aware load balancing and base station switch-off control in 5G HetNets

机译:5G HetNets中的最佳能源感知负载平衡和基站关闭控制

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摘要

We consider optimal energy-aware load balancing of elastic downlink data traffic inside a macrocell with multiple small cells within its coverage area. The system is modeled as a set of parallel queues. In particular, the model of the small cell includes the setup delay resulting from activating the base station after being placed in a low power off state and the idle timer controlling the amount of time to wait before being switched off. We apply the theory of MDPs to develop state-dependent dynamic policies for controlling both the routing of the arrivals as well as the length of the idle timer that minimizes the weighted sum of energy and performance. In particular, we show that in the optimal policy the idle timer control can be simplified to selecting a value arbitrarily close to zero or infinite. Additionally, by utilizing the first step of the well-known policy iteration method, we develop an explicit near-optimal dynamic policy for routing the arrivals and also for determining the idle timer configuration of the system, based on the expressions for the future marginal costs. The performance of the policy is illustrated through numerical examples. (C) 2019 Elsevier B.V. All rights reserved.
机译:我们考虑了宏小区内的弹性下行链路数据流量的最佳能量感知负载平衡,该宏小区在其覆盖区域内有多个小小区。系统被建模为一组并行队列。特别地,小型小区的模型包括建立延迟,该建立延迟是由处于低功率关闭状态之后激活基站所导致的,以及用于控制关闭前等待时间的空闲计时器。我们应用MDP的理论来开发状态相关的动态策略,以控制到达的路由以及空闲计时器的长度,从而最大程度地减少能量和性能的加权和。特别地,我们表明,在最佳策略中,可以将空闲计时器控制简化为选择任意接近零或无穷大的值。此外,通过使用众所周知的策略迭代方法的第一步,我们基于未来边际成本的表达式,开发了一种显式的接近最优的动态策略,用于路由到达并确定系统的空闲计时器配置。通过数字示例说明了该策略的性能。 (C)2019 Elsevier B.V.保留所有权利。

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