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Strategies and Techniques for Powering Wireless Sensor Nodes through Energy Harvesting and Wireless Power Transfer

机译:通过能量收集和无线功率传输为无线传感器节点供电的策略和技术

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摘要

The continuous development of internet of things (IoT) infrastructure and applications is paving the way for advanced and innovative ideas and solutions, some of which are pushing the limits of state-of-the-art technology. The increasing demand for Wireless Sensor Nodes (WSNs) able to collect and transmit data through wireless communication channels, while often positioned in locations that are difficult to access, is driving research into innovative solutions involving energy harvesting (EH) and wireless power transfer (WPT) to eventually allow battery-free sensor nodes. Due to the pervasiveness of radio frequency (RF) energy, RF EH and WPT are key technologies with the potential to power IoT devices and smart sensing architectures involving nodes that need to be wireless, maintenance free, and sufficiently low in cost to promote their use almost anywhere. This paper presents a state-of-the-art, ultra-low power 2.5 μW highly integrated mixed signal system on chip (SoC), for multi-source energy harvesting and wireless power transfer. It introduces a novel architecture that integrates an ultra-low power intelligent power management, an RF to DC converter with very low power sensitivity and high power conversion efficiency (PCE), an Amplitude-Shift-Keying/Frequency-Shift-Keying (ASK/FSK) receiver and digital circuitry to achieve the advantage to cope, in a versatile way and with minimal use of external components, with the wide variety of energy sources and use cases. Diverse methods for powering Wireless Sensor Nodes through energy harvesting and wireless power transfer are implemented providing related system architectures and experimental results.
机译:物联网(IoT)基础设施和应用程序的不断发展为先进和创新的想法和解决方案铺平了道路,其中一些正在推动最新技术的极限。能够通过无线通信通道收集和传输数据的无线传感器节点(WSN)的需求不断增长,尽管它们通常位于难以访问的位置,但正在推动对涉及能量收集(EH)和无线功率传输(WPT)的创新解决方案的研究。 ),最终允许无电池的传感器节点。由于射频(RF)能量的普遍性,RF EH和WPT是关键技术,有可能为物联网设备和智能传感架构提供动力,涉及需要无线,免维护且成本足够低以促进其使用的节点几乎在任何地方。本文介绍了最新的超低功耗2.5 μ W高度集成的片上混合信号系统(SoC),用于多源能量收集和无线功率传输。它介绍了一种新颖的架构,该架构集成了超低功耗智能电源管理,具有极低功耗灵敏度和高功率转换效率(PCE)的RF到DC转换器,幅移键控/频移键控(ASK / FSK)接收器和数字电路,以多种方式实现优势,并以最少的外部组件使用,各种能源和使用案例来应对。实现了通过能量收集和无线功率传输为无线传感器节点供电的多种方法,从而提供了相关的系统架构和实验结果。

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