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A DC-DC Step-Up mu-Power Converter for Energy Harvesting Applications, Using Maximum Power PointTracking, Based on Fractional Open Circuit Voltage

机译:基于分数开路电压的最大功率点跟踪技术,用于能量收集应用的DC-DC升压型mu-Power转换器

摘要

A DC-DC step-up micro power converter for solar energy harvesting applications is presented. The circuit is based on a switched-capacitorvoltage tripler architecture with MOSFET capacitors, which results in an, area approximately eight times smaller than using MiM capacitors for the 0.131mu m CMOS technology. In order to compensate for the loss of efficiency, due to the larger parasitic capacitances, a charge reutilization scheme is employed. The circuit is self-clocked, using a phase controller designed specifically to work with an amorphous silicon solar cell, in order to obtain themaximum available power from the cell. This will be done by tracking its maximum power point (MPPT) using the fractional open circuit voltage method. Electrical simulations of the circuit, together with an equivalent electrical model of an amorphous silicon solar cell, show that the circuit can deliver apower of 1132 mu W to the load, corresponding to a maximum efficiency of 66.81%.
机译:提出了一种用于太阳能收集应用的DC-DC升压微功率转换器。该电路基于具有MOSFET电容器的开关电容器电压三路器架构,其面积约为0.131μmCMOS技术使用MiM电容器的八倍。为了补偿效率损失,由于较大的寄生电容,采用了电荷重用方案。使用专门设计用于非晶硅太阳能电池的相位控制器对电路进行自计时,以便从电池中获得最大可用功率。这将通过分数开路电压方法跟踪其最大功率点(MPPT)来完成。电路的电仿真以及非晶硅太阳能电池的等效电模型表明,该电路可以向负载提供1132μW的功率,对应最大效率为66.81%。

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