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A Phase-Type Based Markov Chain Model for IEEE 802.16e Sleep Mode and Its Performance Analysis

机译:IEEE 802.16e睡眠模式的基于相位类型的马尔可夫链模型及其性能分析

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摘要

To support battery powered mobile broadband wireless access devices efficiently, IEEE 802.16e defines a sleep mode operation for conserving the power of mobile terminals. In this paper we propose a theoretical Phase-type (PH) based Markov chain model to analyze the performance of IEEE 802.16e sleep mode operation. The model describes the behavior of the mobile stations working in sleep mode. In particular, the service process is designed as a discrete PH model. By means of the mathematic tools of PH theory we then derive the closed-form expressions of the mean sojourn time of packets and power consumption. Comparison with simulation results shows that the model provides an accurate prediction of the system performance. Furthermore, we propose a simple utility function to quantify the efficiency of sleep mode operation which takes the joint effect of sojourn time and power saving into account. This function allows mobile stations to decide when to enable sleep mode operation for power saving.
机译:为了有效地支持电池供电的移动宽带无线接入设备,IEEE 802.16e定义了一种睡眠模式操作,以节省移动终端的功率。在本文中,我们提出了一种基于理论相位类型(PH)的马尔可夫链模型,以分析IEEE 802.16e睡眠模式操作的性能。该模型描述了移动台在睡眠模式下的行为。特别地,服务过程被设计为离散的PH模型。然后,利用PH理论的数学工具,得出数据包平均停留时间和功耗的闭式表达式。与仿真结果的比较表明,该模型可以准确预测系统性能。此外,我们提出了一个简单的效用函数来量化睡眠模式操作的效率,其中考虑了暂停时间和节能的共同作用。该功能允许移动台决定何时启用睡眠模式操作以节省功率。

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