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M2M Communication Assessment in Energy-Harvesting and Wake-Up Radio Assisted Scenarios Using Practical Components

机译:使用实际组件在能量收集和唤醒无线电辅助场景中进行M2M通信评估

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摘要

Techniques for wireless energy harvesting (WEH) are emerging as a fascinating set of solutions to extend the lifetime of energy-constrained wireless networks, and are commonly regarded as a key functional technique for almost perpetual communications. For example, with WEH technology, wireless devices are able to harvest energy from different light sources or Radio Frequency (RF) signals broadcast by ambient or dedicated wireless transmitters to support their operation and communications capabilities. WEH technology will have increasingly wider range of use in upcoming applications such as wireless sensor networks, Machine-to-Machine (M2M) communications, and the Internet of Things. In this paper, the usability and fundamental limits of joint RF and solar cell or photovoltaic harvesting based M2M communication systems are studied and presented. The derived theoretical bounds are in essence based on the Shannon capacity theorem, combined with selected propagation loss models, assumed additional link nonidealities, diversity processing, as well as the given energy harvesting and storage capabilities. Fundamental performance limits and available capacity of the communicating link are derived and analyzed, together with extensive numerical results evaluated in different practical scenarios, including realistic implementation losses and state-of-the-art printed supercapacitor performance figures with voltage doubler-based voltage regulator. In particular, low power sensor type communication applications using passive and semi-passive wake-up radio (WuR) are addressed in the study. The presented analysis principles and results establish clear feasibility regions and performance bounds for wireless energy harvesting based low rate M2M communications in the future IoT networks.
机译:无线能量收集(WEH)技术作为一组引人入胜的解决方案不断涌现,可以延长受能量限制的无线网络的寿命,并且通常被视为几乎永久性通信的一项关键功能技术。例如,利用WEH技术,无线设备能够从不同的光源或周围或专用无线发射器广播的射频(RF)信号中收集能量,以支持其操作和通信功能。 WEH技术将在诸如无线传感器网络,机器对机器(M2M)通信和物联网的未来应用中具有越来越广泛的用途。在本文中,研究并提出了基于RF和太阳能电池或光伏收集的联合M2M通信系统的可用性和基本限制。从本质上来说,得出的理论界限是基于香农容量定理,结合选定的传播损耗模型,假定了其他链路非理想性,分集处理以及给定的能量收集和存储能力。得出并分析了通信链路的基本性能极限和可用容量,以及在不同实际情况下评估的大量数值结果,包括实际的实现损失和带有基于倍压器的电压调节器的最新印刷超级电容器性能数据。这项研究特别解决了使用无源和半无源唤醒无线电(WuR)的低功率传感器类型的通信应用。提出的分析原理和结果为未来物联网中基于无线能量收集的低速率M2M通信建立了明确的可行性区域和性能范围。

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