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A CMOS micro power switched-capacitor DC-DC step-up converter for indoor light energy harvesting applications

机译:用于室内光能收集应用的CMOS微功率开关电容器DC-DC升压转换器

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This paper presents a micro power light energy harvesting system for indoor environments. Light energy is collected by amorphous silicon photovoltaic (a-Si:H PV) cells, processed by a switched capacitor (SC) voltage doubler circuit with maximum power point tracking (MPPT), and finally stored in a large capacitor. The MPPT fractional open circuit voltage (V_(OC)) technique is implemented by an asynchronous state machine (ASM) that creates and dynamically adjusts the clock frequency of the step-up SC circuit, matching the input impedance of the SC circuit to the maximum power point condition of the PV cells. The ASM has a separate local power supply to make it robust against load variations. In order to reduce the area occupied by the SC circuit, while maintaining an acceptable efficiency value, the SC circuit uses MOSFET capacitors with a charge sharing scheme for the bottom plate parasitic capacitors. The circuit occupies an area of 0.31 mm~2 in a 130 nm CMOS technology. The system was designed in order to work under realistic indoor light intensities. Experimental results show that the proposed system, using PV cells with an area of 14 cm~2, is capable of starting-up from a 0 V condition, with an irradiance of only 0.32 W/m~2. After starting-up, the system requires an irradiance of only 0.18 W/m~2 (18 μW/cm~2) to remain operating. The ASM circuit can operate correctly using a local power supply voltage of 453 mV, dissipating only 0.085 μW. These values are, to the best of the authors' knowledge, the lowest reported in the literature. The maximum efficiency of the SC converter is 70.3% for an input power of 48 μW, which is comparable with reported values from circuits operating at similar power levels.
机译:本文提出了一种用于室内环境的微功率光能收集系统。光能由非晶硅光伏(a-Si:H PV)电池收集,由具有最大功率点跟踪(MPPT)的开关电容器(SC)倍压电路处理,最后存储在大电容器中。 MPPT分数开路电压(V_(OC))技术由异步状态机(ASM)实施,该异步状态机创建并动态调整升压SC电路的时钟频率,使SC电路的输入阻抗最大光伏电池的功率点条件。 ASM具有单独的本地电源,以使其能够抵抗负载变化。为了减少SC电路占用的面积,同时保持可接受的效率值,SC电路使用具有电荷共享方案的MOSFET电容器作为底板寄生电容器。在130 nm CMOS技术中,该电路的面积为0.31 mm〜2。设计该系统是为了在现实的室内光强度下工作。实验结果表明,所提出的系统使用面积为14 cm〜2的PV电池,能够在0 V条件下启动,辐照度仅为0.32 W / m〜2。启动后,系统仅需要0.18 W / m〜2(18μW/ cm〜2)的辐照度即可保持运行。 ASM电路可以使用453 mV的本地电源电压正常工作,仅消耗0.085μW。就作者所知,这些值是文献中报道的最低值。对于48μW的输入功率,SC转换器的最大效率为70.3%,这与在类似功率水平下工作的电路的报告值相当。

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