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Modeling and performance assessment of the Thai national power grid considering wind farms integration

机译:考虑风电场集成的泰国国家电网的建模与性能评估

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This paper covers the integration of wind power plants with National Thailand Power Grid which includes the impact the power systems. The modeled Thai Power System in PSAT consists of 118 buses, 32 power plants (thermal, hydro, and combined cycle power plant), 139 lines, and 88 loads. The 230 kV and 500 kV of voltage levels have been considered in the model with 100 MVA as based for power flow analysis. This paper also develops and study whole power system of Thailand and interconnection with other neighboring countries e.g., Laos PDR, which seems to be not available in any paper so far. According to Power Development Plan (PDP) and Alternative Energy Development Plan (AEDP) of Thailand which aim to increase renewable energy production, especially wind and solar energy in the future, an existing wind power plant for 6.9 MW and for probably power capacity of 150 MW have been analyzed. The impact to national grid and compatibility with standards of fault ride through capability has been checked by using different type of wind turbines. This praxis has been also repeated for the existing full scaled frequency inverted doubly fed induction generators (DFIGs) and fixed speed wind turbines.
机译:本文涵盖了风电厂与国家泰国电网的整合,包括电力系统的影响。 PSAT中建模的泰国电力系统由118公共汽车,32个发电厂(热,水电和组合循环发电厂),139线和88负载组成。在具有100 MVA的模型中,在基于功率流分析的模型中考虑了230kV和500kV的电压电平。本文还开发和研究泰国的整个电力系统,与其他邻国的互连,例如,老挝人民主义者,这似乎无法在任何纸张中获得。根据泰国的电力发展计划(PDP)和替代能源开发计划(AEDP),旨在增加未来的可再生能源生产,特别是风能和太阳能,现有的风电厂为6.9兆瓦,可能为150的电力容量已经分析了MW。通过使用不同类型的风力涡轮机检查了对国家电网的影响和与故障标准通过能力进行了检查。该Praxis还针对现有的全缩放频率反转的双馈感应发电机(DFIG)和固定速度风力涡轮机重复。

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