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Frequency support by synthetic inertia from variable speed wind turbines

机译:变速风力发电机通过合成惯性提供频率支持

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This paper investigates the possibilities for frequency support by synthetic inertia from variable speed wind turbines. A model for representing synthetic inertia in PSS/E (Power System Simulator for Engineering) has been developed. It allows the user to relatively simple implement different control strategies to find the most suitable strategy for a particular power system. Furthermore, it can be used regardless of the existence of wind turbine models in the power system model and is connected separately to any arbitrary bus in the power system. The results from the simulations show that the frequency nadir is reduced when implementing frequency support by synthetic inertia from wind turbines. As the wind power integration increases the frequency nadir is further improved when wind turbines can provide synthetic inertia. Regarding recovery, the results indicates that in order to minimise the risk of an under-frequency event the energy should be taken during a frequency overshoot and/or distributed in time, i.e. not all wind power plants should recover at the same time. However, these studies of synthetic inertia provided by wind turbines are still in the early stage and further work will be performed.
机译:本文研究了变速风力发电机通过合成惯性支持频率的可能性。已经开发出一种在PSS / E(工程系统仿真器)中表示合成惯性的模型。它允许用户相对简单地实施不同的控制策略,以找到针对特定电源系统的最合适策略。此外,它可以在电力系统模型中不考虑风力涡轮机模型的情况下使用,并且可以单独连接到电力系统中的任意总线。仿真结果表明,通过风力涡轮机的合成惯性实现频率支持时,频率最低点降低了。随着风力发电集成度的增加,当风力涡轮机可以提供合成惯性时,频率最低点会进一步提高。关于恢复,结果表明,为了最小化发生低频事件的风险,应该在频率超调期间和/或及时分配能量,即,并非所有风力发电厂都应同时恢复。然而,由风力涡轮机提供的合成惯性的这些研究仍处于早期阶段,将进一步开展工作。

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