首页> 外文期刊>International Journal of Adaptive Control and Signal Processing >Application of FMRAC to fault-tolerant cooperative control of a wind farm with decreased power generation due to blade erosion/debris buildup
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Application of FMRAC to fault-tolerant cooperative control of a wind farm with decreased power generation due to blade erosion/debris buildup

机译:FMRAC在风电场的容错协同控制中的应用,该风电场由于叶片腐蚀/碎屑堆积而降低了发电量

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Wind energy has shown a remarkable potential for fulfilling the increasing world's energy demand in a clean and sustainable way. The wind energy industry has installed increasingly sophisticated and larger wind turbines particularly in offshore regions to capture such energy as efficiently and cost effectively as possible. The rapid growth in size and capacity of wind turbines together with harsh climate conditions and limited accessibility in offshore regions all result in higher failure rates and increased maintenance requirements and costs. Such difficulties motivate the use of advanced fault detection and diagnosis and fault-tolerant control schemes in wind farms to improve their reliability and availability. Given the importance of this issue, this paper uses a fuzzy model reference adaptive control approach in a cooperative framework that is oriented to the design and development of a novel fault-tolerant cooperative control scheme in a wind farm. This scheme handles decreased power generation faults in a wind farm caused by turbine blade erosion and debris buildup on the blades over time. The effectiveness and performance of the proposed scheme is demonstrated by a series of simulations on an advanced large offshore wind farm benchmark model in the presence of wind turbulence, measurement noise, load variations, and realistic fault scenarios.
机译:风能在以清洁,可持续的方式满足日益增长的世界能源需求方面显示出了巨大的潜力。风能行业已经安装了越来越先进的大型风力发电机,特别是在近海地区,以尽可能高效和经济地捕获此类能源。风力涡轮机的尺寸和容量的快速增长,以及严酷的气候条件和海上区域的可达性有限,都导致更高的故障率,更高的维护要求和成本。这些困难促使风电场中使用高级故障检测和诊断以及容错控制方案,以提高其可靠性和可用性。鉴于此问题的重要性,本文在合作框架中使用了模糊模型参考自适应控制方法,该方法旨在设计和开发风电场中的新型容错合作控制方案。该方案可解决因风轮机叶片腐蚀和随时间推移而积聚在叶片上而导致的风电场发电故障减少的问题。在存在风力湍流,测量噪声,负载变化和实际故障情况的情况下,通过对先进的大型海上风电场基准模型进行一系列模拟,证明了该方案的有效性和性能。

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