LTE-direct与wi - fi -direct在LTE-A系统上的机器类型通信

M. Condoluci, L. Militano, A. Orsino, J. Alonso-Zarate, G. Araniti
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引用次数: 33

摘要

当前和未来版本的3GPP标准将包括针对机器类型通信(MTC)的LTE-Advanced的增强功能。这种新趋势的主要原因是5G无线系统需要实现MTC和人类通信(HTC)之间的共存。因此,需要新颖的解决方案来有效地利用MTC的无线电资源,考虑到优化小数据包传输的需求等。为此,本文讨论了短距离设备对设备(D2D)通信的使用,作为有效管理无线电频谱和降低MTC设备能耗的使能技术。我们考虑一个场景,其中MTC设备分组在一个集群中;在集群成员中,一个终端充当聚合器,负责(i)通过D2D链路接收来自相邻终端的数据,(ii)通过宏蜂窝链路将聚合的数据中继到基站。本文的主要贡献是比较了两种最流行的D2D技术的性能,即WiFi-Direct和LTE-Direct,用于向聚合器传输数据。通过改变集群设备的数量和每个MTC设备上传的数据,在广泛的场景中进行了延迟和能效方面的性能评估。
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LTE-direct vs. WiFi-direct for machine-type communications over LTE-A systems
Current and future releases of 3GPP standards will include enhancements in LTE-Advanced for machine-type communications (MTC). The main reason for this new trend is the fact that 5G wireless systems will need to enable the coexistence between MTC and human-type communications (HTC). Therefore, novel solutions are needed to efficiently exploit the radio resources for MTC, considering, among others, the need to optimize transmissions for small data packets. With this aim, this paper addresses the use of short-range device-to-device (D2D) communications as enabling technology to efficiently manage the radio spectrum and to reduce the energy consumption of MTC devices. We consider a scenario where MTC devices are grouped in a cluster; among the cluster members, one terminal acts as aggregator in charge for (i) receiving data from neighboring terminals via D2D links and (ii) relaying the aggregated data to the base station via macro-cellular link. The main contribution of this paper is to compare the performances of the two most popular D2D technologies, i.e., WiFi-Direct and LTE-Direct, used to transmit data toward the aggregator. The performance evaluation in terms of latency and energy efficiency has been conducted in a wide set of scenarios by varying the number of clustered devices and the data to upload per single MTC device.
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