首页> 外文期刊>IEEE Journal on Selected Areas in Communications >Semidynamic Green Resource Management in Downlink Heterogeneous Networks by Group Sparse Power Control
【24h】

Semidynamic Green Resource Management in Downlink Heterogeneous Networks by Group Sparse Power Control

机译:基于组稀疏功率控制的下行异构网络中的半动态绿色资源管理

获取原文
获取原文并翻译 | 示例
       

摘要

This paper addresses an energy-saving problem for the downlink of a cloud-assisted heterogeneous network (HetNet) using a time-division duplex (TDD) model, which aims to minimize the base stations (BSs) sum power consumption while meeting the rate requirement of each user equipment (UE). The basic idea of this work is to make use of the scalability of system configurations such that green resource management can be employed by flexibly switching off some unnecessary hardware components, especially for off-peak traffic scenarios. This motivates us to utilize a flexible BS power consumption formulation to jointly model its signal processing and circuit power, transmit power, and backhaul transmission power. Instead of using the integer variables to control the “on/off” two status of a BS in most previous work, we employ the group sparsity of a transmit power vector to denote the activity of each frequency carrier (FC) such that the signal processing and circuit power can be scaled with the effective bandwidth, thereby leading to multiple sleep modes for a BS in multi-FC systems. Based on this BS power model and the group sparsity concept, a simplified resource allocation scheme for joint BS-UE association, FC assignment, downlink power allocation, and BS sleep modes determination is presented, which is based on the average channel statistics computed over the coherence time of the large scale fading (LSF). This semidynamic green resource management mechanism can be formulated as a NP-hard optimization problem. In order to make it tractable, the successive convex approximation (SCA)-based algorithm is applied to efficiently find a stationary solution using a cloud-based centralized optimization. Simulation results also verify the effectiveness of the proposed mechanism under the developed BS power consumption model.
机译:本文使用时分双工(TDD)模型解决了云辅助异构网络(HetNet)下行链路的节能问题,该模型旨在在满足速率要求的同时最大程度地减少基站(BS)的总功耗每个用户设备(UE)的数量。这项工作的基本思想是利用系统配置的可伸缩性,以便可以通过灵活地关闭一些不必要的硬件组件(尤其是在非高峰流量情况下)来使用绿色资源管理。这促使我们利用灵活的BS功耗公式来共同对其信号处理和电路功率,发射功率以及回程发射功率建模。在大多数以前的工作中,我们没有使用整数变量来控制BS的``开/关''两个状态,而是采用发射功率矢量的组稀疏性来表示每个频率载波(FC)的活动,以便信号处理电路功率可以通过有效带宽进行调整,从而为多FC系统中的BS带来多种睡眠模式。基于此BS功率模型和组稀疏性概念,提出了一种简化的资源分配方案,用于联合BS-UE关联,FC分配,下行链路功率分配和BS睡眠模式确定,该方案基于在信道上计算的平均信道统计信息大规模衰落(LSF)的相干时间。这种半动态的绿色资源管理机制可以表述为NP难题。为了使其易于处理,使用基于逐次凸逼近(SCA)的算法,使用基于云的集中式优化有效地找到固定解。仿真结果还验证了所提出的机制在已开发的BS功耗模型下的有效性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号