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Analysis of DRX power saving with RRC states transition in LTE networks

机译:LTR网络中RRC状态转换的DRX省电分析

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The 3GPP Long Term Evolution (LTE) wireless technology provides high data rates and improved latency to the end users. Such improvement is obtained from the advanced MAC and PHY layer techniques, which exhaust the battery life of the User Equipment (UE) quickly. To save the power of UE, 3GPP LTE proposes a mechanism called Discontinuous Reception Mechanism (DRX) which lets the UE switch its RF module off when data needs not be transmitted. In this paper, we have developed an analytical model to derive the DRX power saving obtained by the UE in LTE system. Different from other work, the RRC (Radio Resource Control) states transition is considered. The time period for power saving operation is divided into several independent parts to derive the power consumption and the transmission delay. In addition, we introduce the real power consumption model into the derived power saving model to obtain the truly power consumption. The analytical results show the UE with lower packet arrival rate can effectively save more power when entering RRC_IDLE state, and there is a trade-off between the power consumption and the transmission delay.
机译:3GPP长期演进(LTE)无线技术提供高数据速率和最终用户的延迟。这种改进是从先进的MAC和PHY层技术获得的,该技术快速排出用户设备(UE)的电池寿命。为了节省UE的力量,3GPP LTE提出了一种称为不连续接收机制(DRX)的机制,当不发送数据时,UE将其关闭其RF模块。在本文中,我们开发了一种分析模型,用于导出由UE在LTE系统中获得的DRX省电。与其他工作不同,RRC(无线电资源控制)的转换被考虑。省电操作的时间段分为几个独立部件,以导出功耗和传输延迟。此外,我们将实际功耗模型介绍到推导的省电模型中,以获得真正的功耗。分析结果表明,在进入RRC_IDLE状态时,具有较低分组到达速率的UE可以有效地节省更多的功率,并且在功耗和传输延迟之间存在权衡。

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