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An evaluation of fault tolerant wind turbine control schemes applied to a benchmark model

机译:应用于基准模型的容错风力涡轮机控制方案的评估

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Reliability and availability of modern wind turbines increases in importance as the ratio in the world's power supply increases. This is important in order to increase the energy generated per unit and their lowering cost of energy and as well to ensure availability of generated power, which helps keeping the power grids stable. Advanced Fault Tolerant Control is one of the potential tools to increase reliability of modern wind turbines. A benchmark model for wind turbine fault detection and isolation and fault tolerant control has previously been proposed, and based on this benchmark an international competition on wind turbine fault tolerant control has been proposed. In this article the top three solutions from this wind fault tolerant control competition are introduced and evaluated. The evaluation presented in this paper shows that the winner of the competition performs very well on this benchmark and is especially good accommodating sensors faults. The two other evaluated solutions do also well accommodating sensors faults, but have some issues which should be worked on, before they can be considered as a full solution to the benchmark problem.
机译:随着世界电力供应比例的增加,现代风力涡轮机的可靠性和可用性越来越重要。这对于增加单位发电量和降低能源成本以及确保发电量的可用性非常重要,这有助于保持电网稳定。先进的容错控制是提高现代风力涡轮机可靠性的潜在工具之一。先前已经提出了用于风力涡轮机故障检测,隔离和容错控制的基准模型,并且基于该基准,已经提出了关于风力涡轮机容错控制的国际竞争。在本文中,将介绍和评估来自此风容错控制竞赛的前三个解决方案。本文中提出的评估表明,竞赛的获胜者在该基准上表现出色,并且特别擅长解决传感器故障。另外两个经过评估的解决方案也可以很好地适应传感器故障,但是在将它们视为基准问题的完整解决方案之前,还需要解决一些问题。

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