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Fuzzy Logic Tuning of a PI Controller to Improve the Performance of a Wind Turbine on a Semi-submersible Platform under Different Wind Scenarios

机译:PI控制器的模糊逻辑调谐改善不同风景下半潜式平台上风力涡轮机的性能

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The integration of renewable energy sources in power systems, specially wind energy, is growing as environmental concerns arise in society. Nevertheless, the low amount of viable sites onshore or in shallow waters restricts the use of wind energy. In this sense, offshore semi-submersible platforms appear as an option, which in addition enables the integration of complementary elements, for instance wave energy converters. However, the complexity of the system increases due to the interactions between the platform movements and the wind turbine, and traditional control techniques do not enable to cope with these interactions in an easy way, hence limiting the efficiency of energy harvesting. Intelligent control techniques are an option with a great potential to take full account of the said interactions and to improve energy production efficiency. Still, it is required to have simulation models including those effects beforehand, so that the effects of a designed controller on the system can be evaluated. This paper presents an original fuzzy logic controller that tunes a reference controller, improving its performance according to a developed methodology that allows evaluation of controllers for wind turbines in semi-submersible platforms. The resulting fuzzy logic controller allows higher efficiency concerning mechanical loads in the system, electric energy production and tracking error of the speed reference.
机译:随着社会环境所致的环境问题,可再生能源在动力系统中的整合正在增长。尽管如此,陆上或浅水区的少量可行的场地限制了风能的使用。从这个意义上讲,海上半潜式平台出现为选项,此外,还可以实现互补元素的集成,例如波能量转换器。然而,由于平台运动与风力涡轮机之间的相互作用,系统的复杂性增加,以及传统的控制技术不能通不通而行地应对这些相互作用,因此限制了能量收集的效率。智能控制技术是一种选择,具有巨大的潜力,可以满足所述相互作用并提高能源生产效率。尽管如此,需要预先具有包括这些效果的仿真模型,从而可以评估设计的设计控制器对系统的影响。本文介绍了一个原始的模糊逻辑控制器,调整参考控制器,根据开发的方法改善其性能,允许评估半潜式平台中的风力涡轮机的控制器。由此产生的模糊逻辑控制器允许更高的系统载荷效率,电能产生和速度参考的跟踪误差。

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