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Safe transient operation of microgrids based on master-slave configuration

机译:基于主从配置的微电网安全瞬时运行

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Master-Slave configuration is a suitable alternative to droop control method used in microgrids. In this configuration, only one inverter is the master, while the others are slaves. The slave inverters are always current controlled whereas the master inverter should have two selectable operation modes: current controlled, when the microgrid is connected to the grid; and voltage controlled, when it is operating in island mode. In grid-connected mode, the master needs a synchronization system to perform the accurate control of its delivered power, and, in island mode, it needs a voltage reference oscillator that serves as a reference to the slave inverters. Based on the master-slave concept, this paper proposes a single system that perform both functions, i.e., it can act as a synchronization system or as a voltage reference oscillator depending on an input selector. Moreover, the system ensures a smoothly transition between the two operation modes, guaranteeing the safety operation of the microgrid. Experimental results are provided to confirm the effectiveness of the proposed system.
机译:主从配置是微电网中使用的下垂控制方法的合适替代方案。在这种配置中,只有一个逆变器是主站,而其他逆变器是从站。从逆变器始终受电流控制,而主逆变器应具有两种可选的操作模式:微电网连接到电网时受电流控制;在孤岛模式下运行时,其电压受控制。在并网模式下,主设备需要一个同步系统来对其送出的功率进行精确控制,而在孤岛模式下,它需要一个参考电压振荡器,作为从属逆变器的参考。基于主从概念,本文提出了一个可以同时执行这两种功能的系统,即它可以根据输入选择器充当同步系统或参考电压振荡器。而且,该系统确保了两种操作模式之间的平稳过渡,从而保证了微电网的安全运行。提供实验结果以确认所提出系统的有效性。

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