基于超级电容器的太阳能和风能并网存储系统

M. Ramkumar, G. Swapna, A. Saravanan, N. Hemalatha, G. Dharmaraj, S. Purushotham, M. Sivaramkrishnan.
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引用次数: 5

摘要

由于人们对环境的日益关注和技术的进步,太阳能光伏、风能、超级电容器等可再生能源得到了广泛的应用。人们采用了许多创造性的方法将可再生能源转化为电能。其中一个创造性的解决方案是使用电力电子转换器来匹配负载和电网的要求,这样可再生能源发电的动态而不是稳态特性得到增强,目标是实现最大功率点跟踪(MPPT)调节和能量存储来解决这个问题。这种新设计旨在通过使用多个DC-DC转换器[3]来提高电路效率和功率密度,该转换器具有用于可再生能源的直流输入端口,用于储能的单向输入电压端口以及用于操作负载的输出信号端口。近年来出现了一些新的DC-DC四变换器,目前正在进行文献研究。本研究回顾了由不同研究机构开发的几种三端口DC/DC转换器拓扑结构。本研究的结论是,基于三端口电源转换器的电源端子和单电感的拓扑结构有可能进一步研究。采用MATLAB/SIMULINK对系统进行了仿真。
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Super Capacitor based Solar and Wind Grid Connected Storage System
Due to the ever-increasing concern for the environment and the progression of technology, renewable energy such as solar photovoltaic (PV), wind, and super capacitor is being widely used. Many creative approaches have been used to convert the power from renewable sources. One such creative solution is using power electronic converters to match the load and grid requirements so that the renewable generation's dynamic but instead steady-state characteristics are enhanced, with the goal of achieving maximum power point tracking (MPPT) regulate and energy storage to resolve this issue. This new design seeks to increase circuit efficacy and power density by using a multiple DC-DC converter [3] which has a DC input port for renewable sources, an unidirectional Input voltage port for energy storage, as well as an Output signal port for operating the load. A few new DC-DC four converters have developed in recent years and are now being researched in the literature. This study reviews several three-port DC/DC converter topologies that have been developed by different research organizations. The study concludes that topologies based on three-port Power converter with power terminals and a single inductor are likely for further research. The suggested system's simulation is done using MATLAB/SIMULINK.
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