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Integration of Solar Photovoltaic (PV) Systems with CCM Inverters into VCM Droop-Controlled Islanded AC Microgrids

机译:将CCM逆变器与CCM逆变器的太阳能光伏(PV)系统集成到VCM下垂控制的岛立的AC微电网中

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摘要

Nowadays, photovoltaic (PV) systems and microgrids are two of the main technologies in electrical engineering researches. Both are important to realize different types of energy management, feeding islanded loads with high reliability, efficiency, social benefits, low cost and environmental impact. This paper assess the possibility of connecting a PV system to a droop-controlled islanded AC microgrid without modified advanced controls, additional components or the use of batteries in a way that only simple standard commercial equipment are used. Two inverters operating with Voltage Control Mode (VCM) employing the droop control method to form an islanded AC microgrid is approached. These inverters function as grid forming converters giving voltage references in order to integrate them with a conventional solar PV system in Current Control Mode (CCM), consolidated technologies which are easily found on the market, since they are used for grid-tie. The proposed complete system is analysed for a typical day, with real measured variations of irradiance and temperature. The computational results of the VCM and CCM inverters integrated is exposed, showing its feasibility and its limitations.
机译:如今,光伏(PV)系统和微电网是电气工程研究中的两个主要技术。两者都很重要,可以实现不同类型的能源管理,喂养岛屿的载荷,具有高可靠性,效率,社会效益,低成本和环境影响。本文评估了将光伏系统连接到下垂控制的岛立的AC微电网的可能性,而无需修改先进的控制,附加组件或使用电池的方式,即仅使用简单的标准商业设备。接近采用下垂控制方法的电压控制模式(VCM)进行两种逆变器,以形成岛立的AC微电网。这些逆变器用作电网形成转换器,以便将它们与当前控制模式(CCM)中的传统太阳能光伏系统集成,以便在市场上轻松找到的综合技术,因为它们用于网格领带。拟议的完整系统被分析典型的一天,具有实际测量的辐照度和温度的变化。揭露VCM和CCM逆变器的计算结果,显示其可行性及其限制。

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