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Performance Analysis of LTE Random Access Protocol With an Energy Harvesting M2M Scenario

机译:LTE随机接入协议的性能分析与能量收集M2M场景

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摘要

In this article, we analyze the performance of the long-term evolution random access procedure with the Third Generation Partnership Project's access class barring (ACB) mechanism in an energy harvesting (EH) machine-to-machine (M2M) scenario. To circumvent the state-space explosion in the conventional Markov-chain-based analysis due to time-dependent traffic pattern and data and energy buffer status, we develop an analytical model that combines mean-value analysis with the Markov-based analysis. Based on the analytical model, the random access success probability, the access delay of the network, and the average time duration between two successive successful transmissions are derived. Our analysis suggests that in the EH scenario, despite the lower number of the contending nodes in comparison with the non-EH scenario, the ACB parameters must be chosen in a more conservative way to avoid excessive collisions. The ACB parameters include access barring rate and mean barring duration. We also study an energy threshold-based activation policy and investigate the joint effects of this policy and the ACB mechanism on the random access success probability. The extensive simulations were conducted to evaluate the accuracy of the analytical model.
机译:在本文中,我们分析了在能量收集(EH)机器(M2M)场景中的第三代伙伴关系项目的访问类禁止(ACB)机制的长期演化随机接入程序的性能。为了在传统的马尔可夫链的分析中避免状态空间爆炸,由于时间依赖于时间的流量模式和数据和能量缓冲状态,我们开发了一个分析模型,将平均值分析与基于马尔可夫的分析相结合。基于分析模型,导出了随机访问成功概率,网络的访问延迟以及两个连续成功传输之间的平均时间持续时间。我们的分析表明,在eh场景中,尽管与非呃场景相比,竞争节点的数量较少,但必须以更保守的方式选择ACB参数以避免过度冲突。 ACB参数包括访问禁止率和平均禁止持续时间。我们还研究了基于能量阈值的激活政策,并调查了本政策和ACB机制对随机访问成功概率的联合影响。进行广泛的模拟以评估分析模型的准确性。

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