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An 86% Efficiency 12 µW Self-Sustaining PV Energy Harvesting System With Hysteresis Regulation and Time-Domain MPPT for IOT Smart Nodes

机译:具迟滞调节和时域MPPT的86%效率12 µW自持式光伏能量收集系统,适用于IOT智能节点

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摘要

This paper presents a fully-integrated µW-level photovoltaic (PV) self-sustaining energy harvesting system proposed for smart nodes of Internet of Things (IOT) networks. A hysteresis regulation is designed to provide a constant 3.3 V output voltage for a host of applications, including powering sensors, signal processors, and wireless transmitters. Due to the stringent power budget in IOT scenarios, the power consumption of the harvesting system is optimized by multiple system and circuit level techniques. Firstly, the hill-climbing MPPT mechanism reuses and processes the information of the hysteresis controller in the time-domain and is free of power hungry analog circuits. Secondly, the typical power-performance tradeoff of the hysteresis controller is solved by a self-triggered one-shot mechanism. Thus, the output regulation achieves high-performance and yet low-power operations. Thirdly, to execute the impedance tuning of MPPT, the capacitor value modulation (CVM) scheme is proposed instead of the conventional frequency modulation scheme, avoiding quiescent power consumption. Utilizing a commercial PV cell of 2.5 cm 2 , the proposed system provides 0–21 µW output power to the IOT smart nodes. Measured results showed that the PV harvesting system achieved both ultra-low power operation capability at 12 µW and a peak self-sustaining efficiency of 86%.
机译:本文提出了一种针对物联网(IOT)网络的智能节点而提出的完全集成的µW级光伏(PV)自持式能量收集系统。迟滞调节旨在为包括传感器,信号处理器和无线发射器等在内的许多应用提供恒定的3.3 V输出电压。由于物联网场景中严格的功率预算,收割系统的功耗通过多种系统和电路级技术进行了优化。首先,爬坡MPPT机制在时域内重用和处理磁滞控制器的信息,并且没有耗电的模拟电路。其次,磁滞控制器的典型功率性能折衷是通过自触发的单触发机制解决的。因此,输出调节可实现高性能且低功耗的操作。第三,为了执行MPPT的阻抗调整,提出了一种电容值调制(CVM)方案来代替传统的频率调制方案,从而避免了静态功耗。利用2.5 cm 2的商用PV电池,该系统可为IOT智能节点提供0-21 µW的输出功率。测量结果表明,PV收集系统在12 µW的功率下实现了超低功率运行,并且峰值自我维持效率达到86%。

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