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The Simulation Study of Solar PV Coupled Synchronous Buck Converter with Lead acid Battery Charging

机译:铅酸蓄电池充电太阳能光伏同步降压转换器的仿真研究

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Better utilization of solar energy has gained the attention of the present world. It has number of applications in various fields like Automobiles, Electricity sectors, Combined Heat and Power (CHP) generation etc. The Simulation study of a Solar Synchronous Buck Converter has been done which can be used for domestic applications. Modules incorporated in this project are Solar Modules, Synchronous Buck Converter and a Lead Acid Battery. The diode which is present in conventional buck converter is replaced by a MOSFET in the Synchronous Converter and the switching losses of this converter is less compared to buck converter [1]. A Synchronous Converter is connected to solar modules with Maximum Power Point Tracking (MPPT) in which Perturb & Observe algorithm is used. This combination charges the lead acid battery and it is used to power the loads (domestic appliances). The lead acid battery is connected as load to the synchronous buck converter and the amount of charge in the battery is maintained at 60% or above.
机译:太阳能的更好利用已引起当今世界的关注。它在汽车,电力部门,热电联产(CHP)发电等各个领域都有大量应用。已经完成了太阳能同步降压转换器的仿真研究,可用于家庭应用。该项目中包含的模块是太阳能模块,同步降压转换器和铅酸电池。常规降压转换器中存在的二极管由同步转换器中的MOSFET代替,与降压转换器相比,该转换器的开关损耗要小[1]。同步转换器通过最大功率点跟踪(MPPT)连接到太阳能电池组件,其中使用了“扰动和观察”算法。这种组合为铅酸电池充电,并用于为负载(家用设备)供电。铅酸电池作为负载连接到同步降压转换器,并且电池中的电量保持在60%或更高。

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