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Energy Storage for Short-Term Frequency Stability Enhancement in Low-Inertia Power Systems

机译:低惯性电力系统短期频率稳定增强能量存储

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Power systems with large scale integration of inverter interfaced generation plants become vulnerable to short term frequency instability. The short term frequency stability is related to limiting the RoCoF and frequency nadir within acceptable standards following a contingency. Failure to limit frequency nadir and RoCoF can result in the activation of RoCoF relays and under frequency load shedding relays, leading to generation disconnection and unintentional load shedding. This can result in blackout. In this work energy storage system (ESS) is deployed in the two-area power system for improvement of short term frequency stability. A capacity optimization algorithm and dispatch scheme are developed for the ESS. The capacity estimation algorithm determines the required capacity of ESS. The proposed algorithm estimates the required capacity of energy storage while considering the complete dynamics of conventional generators, wind turbine, and power conversion systems. The dispatch scheme operates the ESS to inject the real power in the system to improve the short term frequency stability. The proposed methodology is verified in PSCAD. Simulation results depict the effectiveness of the proposed approach.
机译:具有大规模集成逆变器接口发电厂的电力系统变得容易受到短期频率不稳定的影响。短期频率稳定性与在应急后的可接受标准中限制罗频和频率Nadir有关。未能限制频率Nadir和Rocof可能导致罗频继电器的激活和频率负载脱落继电器,导致产生断开和无意的负载脱落。这可能导致停电。在这项工作中,能量存储系统(ESS)部署在两区域电力系统中,以提高短期频率稳定性。为ESS开发了容量优化算法和调度方案。容量估计算法确定ESS所需的容量。该算法估计能量存储所需容量,同时考虑传统发电机,风力涡轮机和电力转换系统的完整动态。调度方案操作ESS,以注入系统中的实际功率以提高短期频率稳定性。在PSCAD中核实了所提出的方法。仿真结果描述了所提出的方法的有效性。

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