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Accident of Large-scale Wind Turbines Disconnecting from Power Grid and Its Protection

Accident of Large-scale Wind Turbines Disconnecting from Power Grid and Its Protection
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摘要 There were many accidents of large-scale wind turbines disconnecting from power grid in 2011.As singlephase-to-ground fault cannot be correctly detected,single-phase-to-ground fault evolved to phase-to-phase fault.Phase-to-phase fault was isolated slowly,thus leading to low voltage.And wind turbines without enough low voltage ride-through capacity had to be disconnected from the grid.After some wind turbines being disconnected from the grid,overvoltage caused by reactive power surplus made more wind turbines disconnect from the grid.Based on the accident analysis,this paper presents solutions to above problems,including travelling waves based single-phase-to-ground protection,adaptive low voltage protection,integrated protection and control,and high impedance fault detection.The solutions lay foundations in theory and technology to prevent large-scale wind turbines disconnecting from the operating power grid. There were many accidents of large-scale wind turbines disconnecting from power grid in 2011. As single- phase-to-ground fault cannot be correctly detected, single-phase-to-ground fault evolved to phase-to-phase fault. Phase-to-phase fault was isolated slowly, thus leading to low voltage. And wind turbines without enough low voltage ride-through capacity had to be disconnected from the grid. After some wind turbines being disconnected from the grid, overvoltage caused by reactive power surplus made more wind turbines disconnect from the grid. Based on the accident analysis, this paper presents solutions to above problems, including travelling waves based single-phase-to-ground protection, adaptive low voltage protection, integrated protection and control, and high impedance fault detection. The solutions lay foundations in theory and technology to prevent large-scale wind turbines disconnecting from the operating power grid.
出处 《电力系统自动化》 EI CSCD 北大核心 2012年第8期105-109,共5页 Automation of Electric Power Systems
基金 supported by Major International Collaborative Project of National Natural Science Foundation of China(No.51120175001) Key Project of National Natural Science Foundation of China(No.50937003)
关键词 大型风力发电机组 低电压保护 电网事故 断开 单相接地故障 风力涡轮机 故障检测 切断电源 wind turbines protective relaying low voltage ride-through single-phase-to-ground fault
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