基于成功概率约束的异构小蜂窝网络负载感知节能策略

Zhu Xiao, Huashan Li, Zhongfeng Li, Dong Wang
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引用次数: 6

摘要

在本文中,我们研究了在异构网络中部署的大量运行的小蜂窝所产生的能量消耗问题。我们首先提出了两个功耗模型来分别表征小电池的活动状态和空闲状态。然后提出了小单元层的随机休眠模式和负载感知动态休眠模式。随机睡眠是基于小单元操作概率的二项分布来设计的。通过对小蜂窝基站活跃度的分析,定义了应用动态休眠模式的小蜂窝运行概率,并将其与业务负载水平相关联。推导了两种睡眠模式下成功概率的封闭表达式,该表达式用于确定活跃用户是否能够成功连接到小单元。在成功概率约束条件下,给出了每种睡眠模式的能量消耗最小化。仿真结果证明了所提出的两种睡眠模式的有效性。具体睡眠模式的使用可以达到不同的节能效果。通过对比随机睡眠,验证了动态睡眠模式在能耗、成功概率和功耗方面的优越性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Load-awareness energy saving strategy via success probability constraint for heterogeneous small cell networks
In this paper, we investigate the energy consumption issue which stems from the enormous number of running small cells deploying in the heterogeneous networks. We first propose two power consumption models so as to characterize the active state and the idle state of small cells respectively. Then two sleep modes for small cells tier, random sleep mode and load-awareness dynamic sleep mode, are proposed. The random sleep is designed based on a binomial distribution of the small cell operation probability. Through the analysis on activeness of small cell base stations (SBSs), we define the operation probability for the small cell applying the proposed dynamic sleep mode is associated to its traffic load level. The closed-form expressions of success probability, which is used to decide whether an active user can connect to a small cell successfully, are derived for the proposed two sleep modes. Energy consumption minimizations are presented for each of the proposed sleep modes with condition on success probability constraint. Simulation results prove the effectiveness of the proposed two sleep modes. Different energy saving gains can be achieved via using of the concrete sleep mode. The superior of the dynamic sleep mode by comparing the random sleep is also verified in terms of energy consumption, success probability and power efficiency.
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