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Cooperative operation method of two battery systems at Microgrid system

机译:微电网系统中两个电池系统的协同运行方法

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The grid-interconnected Microgrid must be able to operate without the utility's grid to supply electricity in case of outage. To operate in standalone mode, the Microgrid must control electricity demand or supply to maintain the frequency. The Microgrid EMS (Energy Management System) could control supply and demand with the AGC (Auto Generation Control) function using a communication line. Note, however, that the period of AGC is too slow to maintain the frequency if there is rapid variation in loads or generation. Moreover, the transition of operation mode could fail if there is too much power flow at PCC (Point of Common Coupling). In this paper, we propose a method of improving the stability of the grid-interconnected Microgrid using BESS (Battery Energy Storage System) and super capacitor. The cooperative control method between BESS and super capacitor uses droop, which is used at the generator. BESS could operate as UPC (Unit Power Control) or FFC (Feeder Flow Control) depending on Microgrid's operation strategy. We simulate the cooperative control method using PSCAD/EMTDC to verify the validity of the method. As a result, Microgrid's stability is improved using the cooperative control method, and the life span of BESS could be prolonged.
机译:与电网互连的微电网必须能够在没有公用设施电网供电的情况下运行,以防发生断电。为了以独立模式运行,微电网必须控制电力需求或供电以维持频率。 Microgrid EMS(能源管理系统)可以使用AGC(自动发电控制)功能通过通信线路控制供需。但是请注意,如果负载或发电发生快速变化,则AGC的周期太慢而无法维持频率。此外,如果PCC(公共耦合点)上的功率流过多,则操作模式的转换可能会失败。在本文中,我们提出了一种使用电池储能系统(BESS)和超级电容器提高并网微电网稳定性的方法。 BESS和超级电容器之间的协作控制方法使用下垂,该下垂用于发电机。根据Microgrid的操作策略,BESS可以作为UPC(单元电源控制)或FFC(联邦流量控制)运行。我们使用PSCAD / EMTDC模拟了协同控制方法,以验证该方法的有效性。结果,通过协调控制方法提高了微电网的稳定性,可以延长BESS的使用寿命。

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