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A High Step-Up Three-Port DC–DC Converter for Stand-Alone PV/Battery Power Systems

机译:用于独立光伏/电池电源系统的高升压三端口DC-DC转换器

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摘要

A three-port dc–dc converter integrating photovoltaic (PV) and battery power for high step-up applications is proposed in this paper. The topology includes five power switches, two coupled inductors, and two active-clamp circuits. The coupled inductors are used to achieve high step-up voltage gain and to reduce the voltage stress of input side switches. Two sets of active-clamp circuits are used to recycle the energy stored in the leakage inductors and to improve the system efficiency. The operation mode does not need to be changed when a transition between charging and discharging occurs. Moreover, tracking maximum power point of the PV source and regulating the output voltage can be operated simultaneously during charging/discharging transitions. As long as the sun irradiation level is not too low, the maximum power point tracking (MPPT) algorithm will be disabled only when the battery charging voltage is too high. Therefore, the control scheme of the proposed converter provides maximum utilization of PV power most of the time. As a result, the proposed converter has merits of high boosting level, reduced number of devices, and simple control strategy. Experimental results of a 200-W laboratory prototype are presented to verify the performance of the proposed three-port converter.
机译:本文提出了一种将光伏(PV)和电池电源集成在一起的三端口DC-DC转换器,用于高升压应用。该拓扑包括五个电源开关,两个耦合的电感器和两个有源钳位电路。耦合电感用于获得高升压电压增益并减少输入侧开关的电压应力。两组有源钳位电路用于回收存储在漏感器中的能量并提高系统效率。当充电和放电之间发生过渡时,无需更改操作模式。此外,在充电/放电过渡期间,可以同时操作跟踪PV电源的最大功率点并调节输出电压。只要太阳辐射水平不是太低,仅当电池充电电压太高时,才会禁用最大功率点跟踪(MPPT)算法。因此,提出的转换器的控制方案在大多数时间提供了最大的PV功率利用率。结果,所提出的转换器具有高的升压水平,减少的装置数量以及简单的控制策略的优点。给出了200W实验室原型的实验结果,以验证所提出的三端口转换器的性能。

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