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Extending the coverage of the internet of things with low-cost nanosatellite networks

机译:用低成本的纳米卫星网络扩展物联网的覆盖范围

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摘要

Recent technology advances have made CubeSats not only an affordable means of access to space, but also promising platforms to develop a new variety of space applications. In this paper, we explore the idea of using nanosatellites as access points to provide extended coverage to the Internet of Things (IoT) and Machine-to Machine (M2M) communications. This study is mainly motivated by two facts: on the one hand, it is already obvious that the number of machine-type devices deployed globally will experiment an exponential growth over the forthcoming years. This trend is pushed by the available terrestrial cellular infrastructure, which allows adding support for M2M connectivity at marginal costs. On the other hand, the same growth is not observed in remote areas that must rely on space-based connectivity. In such environments, the demand for M2M communications is potentially large, yet it is challenged by the lack of cost-effective service providers. The traffic characteristics of typical M2M applications translate into the requirement for an extremely low cost per transmitted message. Under these strong economical constraints, we expect that nanosatellites in the low Earth orbit will play a fundamental role in overcoming what we may call the loT digital divide. The objective of this paper is therefore to provide a general analysis of a nanosatellite-based, global IoT/M2M network. We put emphasis in the engineering challenges faced in designing the Earth-to-Space communication link, where the adoption of an efficient multiple-access scheme is paramount for ensuring connectivity to a large number of terminal nodes. In particular, the trade-offs energy efficiency access delay and energy efficiency throughput are discussed, and a novel access approach suitable for delay-tolerant applications is proposed. Thus, by keeping a system-level standpoint, we identify key issues and discuss perspectives towards energy efficient and cost-effective solutions.
机译:最近的技术进步使CubeSats不仅成为负担得起的进入太空的手段,而且使有希望的平台能够开发各种新的太空应用程序。在本文中,我们探索了使用纳米卫星作为接入点以提供对物联网(IoT)和机器对机器(M2M)通信的扩展覆盖的想法。这项研究主要基于两个事实:一方面,很明显,全球部署的机器类型设备的数量将在未来几年内呈指数增长。这种趋势是由可用的地面蜂窝基础设施推动的,该基础设施允许以边际成本增加对M2M连接的支持。另一方面,在必须依靠天基连接的偏远地区未观察到相同的增长。在这样的环境中,对M2M通信的需求可能很大,但是由于缺乏经济高效的服务提供商而受到挑战。典型的M2M应用的流量特性转化为对每条传输消息的极低成本的要求。在这些强大的经济约束下,我们预计低地球轨道上的纳米卫星将在克服所谓的loT数字鸿沟方面发挥根本作用。因此,本文的目的是提供基于纳米卫星的全球物联网/ M2M网络的一般分析。我们将重点放在设计地对空通信链路时面临的工程挑战上,在该链路中,采用有效的多址方案对于确保与大量终端节点的连接至关重要。特别是,讨论了折衷的能效访问延迟和能效吞吐量,并提出了一种适用于延迟容忍应用的新颖访问方法。因此,通过保持系统级的立场,我们确定了关键问题并讨论了有关节能和具有成本效益的解决方案的观点。

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