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The influence research of large-scale wind power on out-of-step oscillation of the Northwest China Power Grid

机译:大型风电对西北电网失步振荡的影响研究

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摘要

Based on theoretical research of the influence of Doubly Fed Induction Generator (DFIG) on equivalent system, it is offered that the oscillation is affected by the characteristic of wind turbine. The qualitative analysis shows that the influence of reactive power voltage control mode and protection mode of wind turbine to oscillation mode are unignorable. It is studied that the influence of DFIG active power output to oscillation splitting strategies. Grid simulation result shows that the wind turbine is likely to drop out from the grid if the wind turbines without Low Voltage Ride Through (LVRT) feature. As a result, oscillation will become more obvious, or even new out-of-step oscillation will emerge after wind turbines generator tripping. Reactive power and voltage control has little effect on the oscillation. It is found that the splitting strategies will be affected by the variation of DFIG active power output during a relative long time period compared to the transient oscillation process. The reason behind is that the power flow distribution and voltage level of the system will change due to the variation of DFIG active power output which will finally influence the splitting strategies in some extent.
机译:基于双馈感应发电机(DFIG)对等效系统影响的理论研究,提出了振荡受风力发电机特性的影响。定性分析表明,风力发电机无功电压控制方式和保护方式对振荡方式的影响是不可忽略的。研究了DFIG有功功率输出对振荡分裂策略的影响。电网仿真结果表明,如果没有低压穿越(LVRT)功能的风力涡轮机,风力涡轮机很可能会从电网中掉落。结果,在风力涡轮发电机跳闸之后,振荡将变得更加明显,甚至出现新的失步振荡。无功功率和电压控制对振荡的影响很小。发现与瞬态振荡过程相比,分裂策略将在相对较长的时间段内受到DFIG有功功率输出变化的影响。其背后的原因是系统的功率流分布和电压水平将因DFIG有功功率输出的变化而改变,这最终会在一定程度上影响分离策略。

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