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Optimized LTE Data Transmission Procedures for IoT: Device Side Energy Consumption Analysis

机译:IOT优化LTE数据传输程序:设备侧能量消耗分析

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The efficient deployment of Internet of Things (IoT) over cellular networks, such as Long Term Evolution (LTE) or the next generation 5G, entails several challenges. For massive IoT, reducing the energy consumption on the device side becomes essential. One of the main characteristics of massive IoT is small data transmissions. To improve the support of them, the 3GPP has included two novel optimizations in LTE: one of them based on the Control Plane (CP), and the other on the User Plane (UP). In this paper, we analyze the average energy consumption per data packet using these two optimizations compared to conventional LTE Service Request procedure. We propose an analytical model to calculate the energy consumption for each procedure based on a Markov chain. In the considered scenario, for large and small Inter-Arrival Times (IATs), the results of the three procedures are similar. While for medium IATs CP reduces the energy consumption per packet up to 87% due to its connection release optimization.
机译:在蜂窝网络上有效地部署物联网(IoT),例如长期演进(LTE)或下一代5G,这需要几个挑战。对于大规模物联网,降低设备侧的能量消耗变得必不可少。大规模物联网的主要特征之一是小数据传输。为了改善它们的支持,3GPP在LTE中包括两种新颖的优化:基于控制平面(CP),另一个在用户平面上(UP)。在本文中,与传统的LTE服务请求程序相比,我们使用这两种优化来分析每个数据分组的平均能耗。我们提出了一种分析模型来计算基于马尔可夫链的每个过程的能耗。在所考虑的场景中,对于大而小的到达时间(IATS),三个程序的结果是相似的。虽然对于媒体IATS CP,CP由于其连接释放优化而降低了每分组的能耗高达87%。

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