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Investigations on energy yield and power fluctuation from different control methods for wind energy converters at various wind conditions

机译:各种风力条件下风能转换器不同控制方法能源收益和功率波动的研究

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The amount of electricity generated by wind power converters is world wide steadily growing. In many countries it has become a political and public interest to support this development. From the wind park owner side of view it is of essential interest to generate and sell as much electricity as possible. With increasing shares of wind energy in the electrical power supply, their influence on the mains stability and their reliable energy contribution will become more relevant. Especially at points of common coupling of weak grid branches fluctuating power output of wind energy converters can be harmful for the grid stability. The system management of wind energy converters has great influence on the power yield and the damping/amplification of wind caused power fluctuations. This paper compares a new control approach, the Stochastic Dynamic Optimization, with common control methods, regarding their power yield and electrical power output fluctuation for different wind conditions. The results show that the Stochastic Dynamic Optimization control approach has superior performance regarding the power yield and low power output fluctuation.
机译:风电转换器产生的电力量是全球稳步增长。在许多国家,它已成为支持这一发展的政治和公共利益。从风乐园所有者侧视图,产生和销售尽可能多的电力是必不可少的。随着电力供应中的风能份额增加,它们对电源稳定性的影响及其可靠的能源贡献将变得更加相关。特别是在弱网格分支的共同耦合点处,风能转换器的波动功率输出可能对网格稳定性有害。风能转换器的系统管理对功率产量产生了很大影响,风的阻尼/放大导致功率波动。本文比较了一种新的控制方法,随机动态优化,具有共同控制方法,关于它们的功率产量和不同风能的电力输出波动。结果表明,随机动态优化控制方法对电源产量和低功率输出波动具有卓越的性能。

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