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Towards Efficient Mobile M2M Communications: Survey and Open Challenges

机译:迈向高效的移动M2M通信:调查和开放挑战

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Machine-to-Machine (M2M) communications enable networked devices and services to exchange information and perform actions seamlessly without the need for human intervention. They are viewed as a key enabler of the Internet of Things (IoT) and ubiquitous applications, like mobile healthcare, telemetry, or intelligent transport systems. We survey existing work on mobile M2M communications, we identify open challenges that have a direct impact on performance and resource usage efficiency, especially the impact on energy efficiency, and we review techniques to improve communications. We review the ETSI standard and application protocols, and draw considerations on the impact of their use in constrained mobile devices. Nowadays, smartphones are equipped with a wide range of embedded sensors, with varied local and wide area connectivity capabilities, and thus they offer a unique opportunity to serve as mobile gateways for other more constrained devices with local connectivity. At the same time, they can gather context data about users and environment from the embedded sensors. These capabilities may be crucial for mobile M2M applications. Finally, in this paper, we consider a scenario where smartphones are used as gateways that collect and aggregate data from sensors in a cellular network. We conclude that, in order for their use to the feasible in terms of a normal depletion time of a smartphone's battery, it is a good advice to maximize the collection of data necessary to be transmitted from nearby sensors, and maximize the intervals between transmissions. More research is required to devise energy efficient transmission methods that enable the use of smartphones as mobile gateways.
机译:机器对机器(M2M)的通信使联网的设备和服务能够交换信息并无缝执行动作,而无需人工干预。它们被视为物联网(IoT)和无处不在的应用程序(例如移动医疗,遥测或智能运输系统)的关键推动力。我们调查了有关移动M2M通信的现有工作,确定了对性能和资源使用效率(尤其是对能源效率的影响)有直接影响的开放挑战,并审查了改善通信的技术。我们回顾了ETSI标准和应用协议,并考虑了在受限的移动设备中使用它们的影响。如今,智能手机配备了广泛的嵌入式传感器,具有各种本地和广域连接功能,因此,它们提供了独特的机会,可以用作具有本地连接功能的其他更受限设备的移动网关。同时,他们可以从嵌入式传感器收集有关用户和环境的上下文数据。这些功能对于移动M2M应用程序可能至关重要。最后,在本文中,我们考虑了使用智能手机作为网关来收集和汇总来自蜂窝网络中传感器的数据的场景。我们得出的结论是,为了在智能手机电池的正常耗尽时间上可行地使用它们,建议最大程度地收集附近传感器发送的数据,并最大程度地延长两次发送之间的间隔,这是一个很好的建议。需要开展更多研究来设计节能传输方法,以将智能手机用作移动网关。

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