首页> 外文会议>2019 IEEE International Conference on Environment and Electrical Engineering and 2019 IEEE Industrial and Commercial Power Systems Europe >Feed-Forward Based Fuzzy Logic Controlled BESS for Enhancing the Frequency Stability of Islanded PEA-Microgrid in Thailand
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Feed-Forward Based Fuzzy Logic Controlled BESS for Enhancing the Frequency Stability of Islanded PEA-Microgrid in Thailand

机译:基于前馈的模糊逻辑控制的BESS提高泰国孤立PEA-微电网的频率稳定性

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摘要

With an advancement of the power system according to the economic growth, the frequency improvement of the microgrid remains a challenge. Hence, this paper proposes the Feed-Forward based Fuzzy Logic controlled (FFFL) BESS for enhancing the frequency of islanded Provincial Electricity Authority of Thailand (PEA) microgrid system, which consists of the residential and the Electric Vehicles (EVs) load centers, DGs and BESS. The proposed FFFL method is to compensate the current to both of the direct and the quadrature axis reference currents for utilizing in the BESS current controllers. The simulation results implemented on DIgSILENT PowerFactory software are completely demonstrated that the proposed method is able to enhance the frequency with an acceptable range of the PEA grid code requirement, when the microgrid is detached from the main grid, in comparison with the conventional BESS control methods. Moreover, from the simulation results with the proposed scheme correlated with the traditional BESS control technique, the number of loads being shed by the UnderFrequency (UF) relay is also significantly reduced with a superior performance.
机译:随着经济增长带来的电力系统的进步,微电网的频率改善仍然是一个挑战。因此,本文提出了一种基于前馈的模糊逻辑控制(FFFL)BESS,以提高孤岛泰国省电力管理局(PEA)微电网系统的频率,该系统由住宅和电动汽车(EV)负载中心,DG和BESS。提出的FFFL方法是将电流补偿为直流和正交轴参考电流,以用于BESS电流控制器。完全证明了在DIgSILENT PowerFactory软件上实现的仿真结果,与传统的BESS控制方法相比,当将微电网从主电网上卸下时,该方法能够在PEA电网代码要求的可接受范围内提高频率。 。此外,从仿真结果和与传统的BESS控制技术相关的拟议方案中,欠频(UF)继电器减轻的负载数量也得到了显着降低,并具有出色的性能。

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