基于射频信号的无线能量传输实验

Janne Janhunen, Konstantin Mikhaylov, J. Petäjäjärvi
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引用次数: 6

摘要

采用无线连接的分布式测量和控制系统通常被视为许多新型工业、零售和消费者应用的关键推动者。尽管如此,由于缺乏可靠的解决方案,大型无线传感器网络的快速传播受到了阻碍,这些解决方案可以最大限度地减少资本和运营支出。在这方面,这些设备是由从环境中收集的能量供电的,看起来非常有吸引力。在所有这些系统中,从指定的无线(即射频(RF))频道收集能量的系统通常可以享受更稳定的能量收入,这使得它们比其他系统更可靠。由于这个原因,在当前的论文中,我们关注并讨论了实现现实生活中射频供电无线传感器设备开发的关键技术和设计方面。也就是说,我们解决了设计天线和能量收集电路的可行效率的问题。此外,我们还详细介绍了与传感器节点的设计以及优化其计算和通信相关的特定方面。所开发的装置作为快速旋转机械结构的一部分在恶劣环境下进行了测试,证明了所提出解决方案的可行性。本文讨论的技术是即将到来的5G和物联网开发和部署的重要组成部分。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental RF-signal based wireless energy transmission
The distributed measurement and control systems employing wireless connectivity are commonly seen as the key enablers for many novel industry, retail and consumer applications. Even though, the fast spread of large wireless sensor networks today is obstructed by the absence of solutions, which are at the same time dependable, and can minimize both capital and operational expenditures. In this respect the devices, which are powered with the energy collected from their environment, look very attractive. Among all of them, the systems collecting the energy from a designated wireless (i.e., radio frequency (RF)) channel can often enjoy a more stable energy income, which makes them more dependable than their counterparts. Due to this reason, in the current paper we focus on and discuss the key techniques and design aspects enabling development of a real-life RF-powered wireless sensor device. Namely, we address the problems of designing an antenna and the energy harvesting circuit with feasible efficiency. In addition, we detail particular aspects related to the design of a sensor node and optimizing its computing and communication. The developed device is tested in harsh environment as a part of a fast rotating mechanical structure, showing the feasibility of the proposed solutions. The technology discussed in the paper is an important part of the upcoming 5G and IoT development and deployment.
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