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The impact of LVRT characteristic on the stability of Northwest China grid with large scale wind power

机译:LVRT特征对大规模风力大规模西北网格稳定性的影响

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The wind power integration in northwest grid will produce great influence on the operation of power grid which is particularly different from conventional power network. The problem of security and stability of the power grid has been prominent, which may intensify with the increase of wind power integration scale and capacity. In this paper, the digital-analog hybrid simulation model of Northwest China grid is built based on the data of summer-peak load in 2015 level year. Based on the model, the security and stability of the northwest power grid is studied by simulating different types of the serious faults on the the wind farm interconnection point and the 750kV transmission lines at the Hexi corridor. Study shows that the different low voltage ride through (LVRT) capability characteristic may cause different impacts on the stability of Northwest China grid with large scale wind power. The voltage index of wind turbines' LVRT capability and proportion requirements of wind turbines with LVRT capability are put forward to make sure the stability of power system after N-1 faults. Hierarchical control strategy for wind turbine is promoted to prevent system instability after serious faults. It is of great guiding significance on the planning and construction of Northwest China grid, as well as the safety and stability operation of power grid with large-scale wind power.
机译:西北网格中的风力集成将对电网的操作产生很大影响,这与传统电力网络特别不同。电网的安全性和稳定性问题突出,这可能加剧了风力电力集成规模和容量的增加。本文基于2015年夏季峰值负荷数据建立了西北地球网格的数字模拟混合仿真模型。基于该模型,通过在河西走廊的风电场互连点和750kV输电线上模拟不同类型的严重故障来研究西北电网的安全性和稳定性。研究表明,不同的低电压骑行(LVRT)能力特性可能对大规模风电网的西北网格稳定性产生不同的影响。提出了风力涡轮机LVRT能力和风力涡轮机的比例要求的电压指数,以确保N-1故障后电力系统的稳定性。促进了风力涡轮机的分层控制策略,以防止在严重故障后系统不稳定。中国西北网格的规划和建设具有巨大的指导意义,以及大规模风电网的电网安全和稳定运行。

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