并网和有意孤岛运行的微电网动态建模

R. Vijayan, S. Ch, R. Roy
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引用次数: 13

摘要

微电网被定义为提供电能的多个分布式发电机(dg)的集群,如可再生能源。微电网与主电网并网。当微电网与公用事业系统的其余部分隔离时,它被称为故意孤岛模式。在此模式下,DG逆变系统以电压控制方式运行,为本地负载提供恒定电压。在并网模式下,微电网以恒流控制模式运行,向主电网提供预置的电力。本文的主要贡献如下:1)设计了一种基于网络的逆变电源控制方案,该方案在并网模式下提供适当的电流控制,在孤岛模式下提供适当的电压控制。2)开发了电网重连过程中有意孤岛检测算法和同步控制器。3)利用SIMULINK对该方法下的系统进行动态建模和仿真。利用Simulink动态模型进行的仿真结果表明,这些控制器为微电网提供了确定性和可靠的电网连接。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dynamic modeling of microgrid for grid connected and intentional islanding operation
Microgrid is defined as the cluster of multiple distributed generators (DGs) such as renewable energy sources that supply electrical energy. The connection of microgrid is in parallel with the main grid. When microgrid is isolated from remainder of the utility system, it is said to be in intentional islanding mode. In this mode, DG inverter system operates in voltage control mode to provide constant voltage to the local load. During grid connected mode, the Microgrid operates in constant current control mode to supply preset power to the main grid. The main contribution of this paper is summarized as 1) Design of a network based control scheme for inverter based sources, which provides proper current control during grid connected mode and voltage control during islanding mode. 2) Development of an algorithm for intentional islanding detection and synchronization controller required during grid reconnection. 3) Dynamic modeling and simulation are conducted to show system behavior under proposed method using SIMULINK. From the simulation results using Simulink dynamic models, it can be shown that these controllers provide the microgrid with a deterministic and reliable connection to the grid.
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