Dynamic DRX algorithms for reduced energy consumption and delay in LTE networks

R. SyamaVarma, K. Sivalingam, Li-Ping Tung, Ying-Dar Lin
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引用次数: 10

Abstract

The Long Term Evolution (LTE) standard specifies the Discontinuous Reception Mechanism (DRX) mechanism for saving power at the User Equipment (UE). Here, a UE switches off its RF circuitry when there are no packets to be transmitted or received. The existing DRX algorithms use static operational parameters that are determined by the evolved nodeB (eNB) at the start of a UE's session. During the switch-off period, packets destined to the UE are buffered in the eNB leading to higher packet latency. This paper presents two adaptive algorithms to dynamically adjust the DRX parameters, in order to reduce both energy consumption and the extra delay incurred. The algorithms use application Quality-of-Service (QoS) and Channel Quality Information (CQI) to adjust the DRX parameters. Performance studies based on ns3 simulator show that the algorithms are able to reduce packet delay compared to static DRX by up to 60%, 60% and 75% and reduce energy consumption by up to 75%, 43% and 90% for video streaming, VoIP and bursty data applications respectively.
动态DRX算法在LTE网络中降低能耗和延迟
LTE (Long Term Evolution)标准规定了DRX (Discontinuous Reception Mechanism)机制,以节省用户设备(UE)的电量。在这里,当没有数据包要发送或接收时,UE关闭其RF电路。现有的DRX算法使用静态操作参数,这些参数由演进的节点b (eNB)在UE会话开始时确定。在关闭期间,到达终端的报文在eNB中被缓冲,导致报文延迟增加。本文提出了两种动态调整DRX参数的自适应算法,以减少能量消耗和产生的额外延迟。该算法使用应用服务质量(QoS)和信道质量信息(CQI)来调整DRX参数。基于ns3模拟器的性能研究表明,在视频流、VoIP和突发数据应用中,与静态DRX相比,这些算法能够将数据包延迟分别降低60%、60%和75%,并将能耗分别降低75%、43%和90%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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