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Optimal sizing of a utility-scale energy storage system in transmission networks to improve frequency response

机译:传输网络中的公用事业尺度储能系统的最佳尺寸,以提高频率响应

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The frequency response of a large power system is affected by the penetration of renewable energy sources (RESs), where a utility-scale energy storage system (ESS) can alleviate the problem. This paper presents a strategy for sizing an ESS to improve frequency response of transmission networks. The location of the ESS in the transmission network is determined through a sensitivity analysis targeting minimum line loading around a bus. The ESS sizing strategy considers the minimization of frequency deviation as well as rate of change of frequency (ROCOF) after generator or load tripping events. The tuning of PQ controller parameters of the ESS (active power part) is also performed for frequency response improvement. The proposed approach is tested in a modified IEEE-39 bus power system considering a variety of scenarios where RESs are integrated as four different schemes for peak and off-peak load conditions. DIgSILENT PowerFactory is used for developing, testing, and analyzing the system models. A fitness-scaled chaotic artificial bee colony (FSCABC) optimization algorithm (a hybrid meta-heuristic approach) is used for optimization through a Python script automating simulation events in PowerFactory. The results obtained from the FSCABC approach are verified through the application of a particle swarm optimization algorithm. The simulation results suggest that the proposed ESS sizing technique including ESS controller tuning can successfully improve the frequency response of a transmission network.
机译:大型电力系统的频率响应受可再生能源(RESS)的渗透率的影响,其中实用规模的能量存储系统(ESS)可以减轻问题。本文提出了一种策略,用于提高传输网络的频率响应。传输网络中的ESS的位置通过瞄准总线周围的最小线路加载的灵敏度分析来确定。 ESS调整策略考虑了发电机或负载跳闸事件后频率偏差的最小化以及频率(Rocof)的变化率。还对频率响应改进进行了ESS(有源电源部分)的PQ控制器参数的调整。考虑到诸如峰值和非峰值负载条件的四种不同方案,在修改的IEEE-39总线电力系统中测试了所提出的方法。 DigSilent PowerFactory用于开发,测试和分析系统模型。健身缩放的混沌人造蜜蜂菌落(FSCABC)优化算法(混合元 - 启发式方法)用于通过POWACTORY中的Python脚本自动化模拟事件进行优化。通过应用粒子群优化算法来验证从FSCABC方法获得的结果。仿真结果表明,所提出的ESS尺寸技术,包括ESS控制器调整,可以成功地改善传输网络的频率响应。

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