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Design, analysis, and real-time testing of a controller for multibus microgrid system

机译:多总线微电网系统控制器的设计,分析和实时测试

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This paper concentrates on the design and analysis of a controller for multibus microgrid system. The controller proposed for use with each distributed generation (DG) system in the microgrid contains inner voltage and current loops for regulating the three-phase grid-interfacing inverter, and external power control loops for controlling real and reactive power flow and for facilitating power sharing between the paralleled DG systems when a utility fault occurs and the microgrid islands. The controller also incorporates synchronization algorithms for ensuring smooth and safe reconnection of the micro and utility grids when the fault is cleared. With the implementation of the unified controller, the multibus microgrid system is able to switch between islanding and grid-connected modes without disrupting the critical loads connected to it. The performance of this unified controller has been verified in simulation using a real-time digital simulator and experimentally using a scaled laboratory prototype.
机译:本文着重于多总线微电网系统控制器的设计与分析。建议与微电网中的每个分布式发电(DG)系统一起使用的控制器包含内部电压和电流回路,用于调节三相并网逆变器,以及外部功率控制回路,用于控制有功和无功功率流以及促进功率共享公用事业发生故障时,并行DG系统与微电网岛之间的距离。控制器还集成了同步算法,以确保在清除故障后平稳且安全地重新连接微型电网和公用电网。通过使用统一控制器,多总线微电网系统能够在孤岛模式和并网模式之间切换,而不会破坏与其相连的关键负载。该统一控制器的性能已通过实时数字仿真器在仿真中进行了验证,并在规模化实验室原型的实验中得到了验证。

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