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Test result of microgrid management function in KERI pilot plant

机译:Keri Pilot工厂微电网管理功能的测试结果

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As usual, the microgrid operates in grid-connect mode, but, when a fault occurs in the upstream grid, it should disconnect and shift into islanded operation mode. In grid-connect mode, the controlling power flow at PCC is necessary management function rather than the frequency and voltage. However, the controlling the frequency and voltage is asked in islanded mode. To achieve these management goals appropriately, the cooperative control strategy among microsources is needed. This supervisory control action is executed at MMS. In this paper, the management function of MMS is presented and evaluated by HILS test system and microgrid pilot plant. The proposed HILS test system was composed of the RTDS and a communication emulator. The RTDS performed real-time simulation of component models of the microgrid and the communication emulator simulated communication functions of components of the microgrid. The pilot plant consists of the PV, PV/Wind Hybrid system, BESS, diesel generators, and RLC loads. The test results show that the proper control strategy can ensure stability of microgrid in islanded mode and maintain the power flow of PCC at desired value successfully.
机译:像往常一样,MicroGrid以网格连接模式运行,但是,当上游网格中发生故障时,它应该断开并移入孤岛操作模式。在网格连接模式中,PCC的控制电源是必要的管理功能而不是频率和电压。但是,在岛状模式下询问控制频率和电压。为了适当地达到这些管理目标,需要微观乐库中的合作控制策略。此监控操作在MMS执行。本文介绍了MMS的管理功能,并由HILS测试系统和微电网试验工厂评估和评估。建议的HILS测试系统由RTD和通信仿真器组成。 RTDS执行了微电网的组件模型的实时仿真和微电网组件的通信仿真器模拟通信功能。试点工厂包括PV,PV /风混合系统,贝塞,柴油发电机和RLC负载。测试结果表明,适当的控制策略可以确保孤岛模式中微电网的稳定性,并成功地保持所需值的PCC电流。

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