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Performance analysis of an adaptive DRX mechanism with flexible short/long cycle switching in LTE network

机译:LTE网络中具有灵活的短/长周期切换的自适应DRX机制的性能分析

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Discontinuous Reception (DRX) operation is specified by Long Term Evolution (LTE) for power saving of user equipment (UE). In this paper, we evaluate the performance in terms of the power consumption and average packet delay of a novel adaptive DRX mechanism designed for delay tolerant applications with a flexible Short/Long DRX Cycle switching scheme. As a comparison, we model the fixed Short/Long Cycle switching process in the current normal DRX mechanism as a Markov chain, and then extend it to a bidimensional state transition model for the Short/Long Cycle switching process in the novel DRX mechanism. The simulation results show that the new Short/Long Cycle switching scheme can achieve better power saving performance at the cost of increasing packet delay, and a tradeoff between them can be made by the appropriate configuration. It also show that the performance gain can be more observable in the case of traffic with shorter inter arrival time.
机译:长期演进(LTE)指定了不连续接收(DRX)操作,以节省用户设备(UE)的功率。在本文中,我们根据功耗和平均数据包延迟评估了一种新的自适应DRX机制的性能,该机制专为具有延迟短/长DRX周期切换方案的延迟容忍应用而设计。作为比较,我们将当前普通DRX机制中的固定短/长周期切换过程建模为马尔可夫链,然后将其扩展到新型DRX机制中短/长周期切换过程的二维状态转换模型。仿真结果表明,新的短/长周期切换方案可以以增加分组延迟为代价实现更好的节能性能,并且可以通过适当的配置在两者之间进行权衡。它还表明,在到达间隔时间较短的交通情况下,性能提升更为明显。

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