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A Thermal/RF Hybrid Energy Harvesting System With Rectifying-Combination and Improved Fractional-OCV MPPT Method

机译:具有整流组合和改进的分数-OCV MPPT方法的热/ RF混合能量收集系统

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This paper presents a thermal/RF hybrid energy harvester. The energy harvesting system can scavenge energy from a thermoelectric generator (TEG) and a radio-frequency (RF) energy source simultaneously, and deliver the combined power to a single load. Two techniques are employed in the system to increase the end-to-end efficiency; the rectifying-combination technique is proposed to eliminate the power loss associated with a dedicated AC-DC converter before the combiner and an improved fractional open-circuit voltage (FOCV) maximum power tracking (MPPT) is considered for a high average efficiency. A dynamic power path control extracts the maximum RF power from a cross-coupled differential rectifier, and also behaves as an AC/DC energy combiner. The thermal/RF harvester system achieves a measured peak end-to-end power conversion efficiency (PCE) of 63.4%. The shorter sampling time of 26ms every 16s for the proposed FOCV MPPT method reduces the long charging tail required to refresh the sampling capacitor, resulting in a an improved average efficiency of 82.2% for the thermal harvester. Fabricated in 0.18 $mu ext{m}$ CMOS technology, the prototype operates at a thermal input voltage ranging from 40 mV to 400 mV and an RF power from -18 dBm to -3 dBm and delivers an output voltage of 1.8 V. The total area of the fabricated circuit prototype is 1.22 mm(2).
机译:本文介绍了热/射频混合能量收割机。能量收集系统可以同时从热电发电机(TEG)和射频(RF)能源中清除能量,并将组合功率传送到单个负载。在系统中采用两种技术来增加端到端效率;提出了在组合器之前消除与专用AC-DC转换器相关联的功率损耗,并考虑了高平均效率,以在组合器和改进的分数开路电压(FOCV)最大功率跟踪(MPPT)中消除与专用AC-DC转换器相关联的功率损耗。动态电力路径控制从交叉耦合的差分整流器中提取最大RF功率,并且也表现为AC / DC能量组合器。热/ RF收割机系统实现了63.4%的测量峰端到端电源转换效率(PCE)。对于所提出的FocV MPPT方法,每16秒的较短采样时间为26毫秒,减少了刷新采样电容所需的长充电尾,导致热收割机的平均效率为82.2%。在0.18 $ mu text {m} $ CMOS技术中制造,原型以40mV至400 mV的热输入电压运行,从-18 dBm到-3 dBm的RF功率,并提供1.8 V的输出电压。制造电路原型的总面积为1.22毫米(2)。

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