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Accurate Modeling of the DRX Mechanism with Predetermined DRX Cycles Based on the 3GPP LTE Standard

机译:基于3GPP LTE标准的具有预定DRX周期的DRX机制的精确建模

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In Long Term Evolution-Advanced (LTE-A), the Discontinuous Reception (DRX) mechanism conserves the power of a User Equipment (UE) by monitoring the UE's downlink channels for a specific period and turning off the UE's radio when no packets arrive during the period. There has been heated discussion in previous studies, but most previous models of DRX operation are partially inconsistent with the LTE-A specifications. The reason is that the previous models hold the assumption that a new DRX cycle starts after an expiration of a drx-InactivityTimer or a period of continuous reception. This assumption causes undetermined DRX cycles and fixed-length sleep time in a UE in a DRX mechanism. However, the drx-InactivityTimer expiration can occur at any instant within a DRX cycle, which causes the variable-length sleep time. In this paper, we first propose a novel analytical model fitting for the specification DRX mechanism by using a semi-Markov process. Two key performance indicators affected by the DRX mechanism, the power saving factor and the average buffering delay of radio-off periods, are derived. We also prove the feasibility of the proposed model with stability analysis. Finally, the analytical results are validated against the simulation results and show the effects of different DRX configurations for the Poisson arrival process.
机译:在高级长期演进(LTE-A)中,不连续接收(DRX)机制通过在特定时间段内监视UE的下行链路信道并在没有数据包到达时关闭UE的无线电来节省用户设备(UE)的功率。时期。在先前的研究中已经进行了激烈的讨论,但是大多数先前的DRX操作模型在某种程度上与LTE-A规范不一致。原因是以前的模型假设drx-InactivityTimer到期或连续接收一段时间后开始新的DRX周期。该假设在DRX机制中导致UE中的DRX周期不确定以及固定长度的睡眠时间。但是,drx-InactivityTimer到期可以在DRX周期内的任何时刻发生,这会导致可变长度的睡眠时间。在本文中,我们首先使用半马尔可夫过程提出了一种适合规范DRX机制的新颖分析模型。推导了受DRX机制影响的两个关键性能指标:功率节省因数和无线电关闭周期的平均缓冲延迟。我们还通过稳定性分析证明了该模型的可行性。最后,针对仿真结果验证了分析结果,并显示了不同DRX配置对泊松到达过程的影响。

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