风力发电厂降额运行分布式低复杂度控制器

B. Biegel, Daria Madjidian, Vedrana Spudić, A. Rantzer, J. Stoustrup
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引用次数: 57

摘要

我们考虑一个以降额模式运行的兆瓦级风力涡轮机的风力发电厂。在此模式下运行时,风电场控制器在满足总功率需求的前提下,可以自由地将功率设定点分配给各个风机。在这项工作中,我们设计了一个控制器,利用这种自由来减少风力发电厂涡轮机的疲劳。我们证明了控制器可以以分散的方式设计,使得每个风力涡轮机仅依靠少量测量和少量通信就配备了一个局部低复杂度控制器。作为控制器设计的基础,建立了线性风力机模型,并在运行的兆瓦级风力发电机组中进行了验证。由于可用于测试的风力发电厂的限制,不可能实现开发的控制器;相反,最终的分布式控制器是通过使用工业风力涡轮机模型进行仿真来评估的。模拟结果一致表明,疲劳程度降低了15-20%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Distributed low-complexity controller for wind power plant in derated operation
We consider a wind power plant of megawatt wind turbines operating in derated mode. When operating in this mode, the wind power plant controller is free to distribute power set-points to the individual turbines, as long as the total power demand is met. In this work, we design a controller that exploits this freedom to reduce the fatigue on the turbines in the wind power plant. We show that the controller can be designed in a decentralized manner, such that each wind turbine is equipped with a local low-complexity controller relying only on few measurements and little communication. As a basis for the controller design, a linear wind turbine model is constructed and verified in an operational wind power plant of megawatt turbines. Due to limitations of the wind power plant available for tests, it is not possible to implement the developed controller; instead the final distributed controller is evaluated via simulations using an industrial wind turbine model. The simulations consistently show fatigue reductions in the magnitude of 15-20%.
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