并网光伏系统升压变流器分析

E. Immanuvelbright, R. Muthukumar
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引用次数: 0

摘要

在高太阳能地区,光伏系统是一种低成本的电力来源。光伏系统的优点包括无污染和低维护。太阳能改变了辐照度和温度,而电池的部分遮阳是降低功率输出的一个因素。因此,不同的算法正在被创建,以从光伏装置中获得最大的功率,并且正在创建升压转换器来控制供应。直流架构将在未来的配电网中受到高度追捧。在本研究中,所有上述的想法都将用于即将到来的直流应用的直流电网。微电网的概念正迅速被认为是连接可再生能源发电基地和负荷的一种智能方法。直流电网在现代领域是必不可少的。商业、住宅和工业应用都越来越多地使用直流系统。在效率,控制和可靠性方面,直流电网是优越的。在未来的配电网中,直流结构将受到高度追捧。在本研究中,所有上述的想法都将用于即将到来的直流应用的直流电网。
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Analysis of Boost Converters Fed Grid-Tied PV System
In high solar energy regions, photovoltaic systems are a low-cost source of electrical power. The advantages of a PV system include non-pollution and low maintenance. Solar energy alters irradiance and temperature, and partial shading in the cells is one factor that reduces power output. Therefore, different algorithms are being created to get the most power out of the PV setup, and boost converters are being created to control the supply. DC architectures will be highly sought-after in electrical distribution networks in the future. All of the aforementioned ideas are reviewed in this study for use in DC grids for upcoming DC applications. The idea of a microgrid is quickly becoming recognized as a smart approach to link renewable drive bases and loads. A Direct current grid is essential for the modern domain. Commercial, residential, and industrial applications all increasingly use DC systems. In terms of efficiency, control, and dependability, DC grids are superior. Direct current architectures will be highly sought-after in electrical distribution networks in the future. All of the aforementioned ideas are reviewed in this study for use in DC grids for upcoming DC applications.
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