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Real-Time Dynamic Simulation of Korean Power Grid for Frequency Regulation Control by MW Battery Energy Storage System

机译:兆瓦级电池储能系统对韩国电网进行调频控制的实时动态仿真

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摘要

The aim of this study was to develop a real-time dynamic simulator of a power grid with power plant and battery model. The simulator was used to investigate the frequency control characteristics of a megawatt-scale high-capacity energy storage system connected to the electric power grid. In this study, a lithium-ion secondary battery was chosen as one of the batteries for a grid-connected model. The dynamics of the model was analysed in both steady and transient states. The frequency control system of the battery model plays a role in regulating the grid frequency by controlling the power of energy storage systems according to process variables and grid frequencies. The power grid model based on the current power network of South Korea, included power plants, substations and power demands. The power supply is classified by the type of turbine generator as thermal, nuclear, hydro power, pumped power storage, combined power plants and batteries, including high-capacity energy storage systems rated for a maximum of 500 MW. This study deals with an installed capacity of 87.17 GW and peak load of 77.30 GW in the Korean power grid. For 24 hours of operation, the maximum and minimum power outputs were simulated as 61.59 GW and 46.32 GW, respectively. The commercialized real-time dynamic simulation software ProTRAX was used. The simulation was conducted to observe the operation characteristics of the frequency control system during a breakdown of power plants, as well as under governor-free operation, auto generation control operation, and with the battery energy storage system connected. The results show that the model is valid for each power plant breakdown simulation. They also confirm that the output power and frequency controls of the battery operated well during simulations.
机译:这项研究的目的是开发具有电厂和电池模型的电网实时动态模拟器。该模拟器用于研究连接到电网的兆瓦级大容量储能系统的频率控制特性。在这项研究中,锂离子二次电池被选为并网模型的电池之一。在稳态和瞬态下都分析了模型的动力学。电池模型的频率控制系统通过根据过程变量和电网频率控制储能系统的功率来调节电网频率。基于韩国当前电网的电网模型包括发电厂,变电站和电力需求。根据涡轮发电机的类型,电源分为火力发电,核能,水力发电,抽水蓄能,联合发电厂和电池,包括额定容量最大为500 MW的高容量储能系统。这项研究涉及韩国电网的装机容量为87.17 GW,峰值负荷为77.30 GW。对于24小时的运行,最大和最小功率输出分别模拟为61.59 GW和46.32 GW。使用了商业化的实时动态仿真软件ProTRAX。进行仿真是为了观察发电厂故障期间以及无调速器运行,自动发电控制运行以及连接电池储能系统时频率控制系统的运行特性。结果表明,该模型对每次电厂故障仿真都是有效的。他们还证实了仿真期间电池的输出功率和频率控制运行良好。

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