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Impact of wind speed disturbance on power system frequency stability

机译:风速扰动对电力系统频率稳定性的影响

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When wind generator is integrated into the power system, it will not only change the system's inertia but also introduce a lot of randomness to the active power output of wind farms. This is due to the wind speed disturbance which wind farms has always suffered from. Hence the large-scale wind farms integration into the power system will results in profound influence on frequency stability. This paper focuses on the study of frequency stability of a power system integrated with large-scale wind farms under different wind speed disturbance scenarios. A comparison of dynamic frequency response characteristics during the period when the wind turbines experience random noise disturbance, ramp events and generator trips in the power grid with two different wind turbines which are doubly fed induction generator (DFIG) and direct drive synchronous generator (DDSG) is made. The simulation results indicate the wind speed disturbance significantly influence the frequency of power grid. The advantages of DDSGs over DFIGs are that they reduce the impact of wind speed random noise disturbance and ramp events are significant. Nonetheless, the DFIGs are less likely to tripping from power grid when the wind speed is high.
机译:将风力发电机集成到电力系统中后,不仅会改变系统的惯性,还会给风电场的有功功率输出带来很多随机性。这是由于风电场一直遭受的风速干扰。因此,将大型风电场集成到电力系统中将对频率稳定性产生深远的影响。本文着重研究了在不同风速扰动情况下与大型风电场相结合的电力系统的频率稳定性。使用两个不同的双馈感应发电机(DFIG)和直接驱动同步发电机(DDSG)的风力涡轮机比较风力涡轮机在电网中遇到随机噪声干扰,斜坡事件和发电机跳闸期间的动态频率响应特性制造。仿真结果表明,风速扰动显着影响电网频率。 DDSG优于DFIG的优点是它们减少了风速随机噪声干扰的影响,并且斜坡事件非常重要。尽管如此,当风速较高时,DFIG不太可能从电网跳闸。

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