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首页> 外文期刊>IEEE Journal of Oceanic Engineering >Fuzzy Gain Scheduled PI-Based Airflow Control of an Oscillating Water Column in Wave Power Generation Plants
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Fuzzy Gain Scheduled PI-Based Airflow Control of an Oscillating Water Column in Wave Power Generation Plants

机译:波浪发电厂振荡水塔的基于模糊增益PI调度的气流控制

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Numerous control schemes have been proposed to reach a more efficient power generation using Wells-turbine-based oscillating-water-column power plants. Most of these control strategies aim to avoid the stalling behavior, a feature of the Wells turbine, that limits the generated power. Besides, the plant must be able to maintain its performance despite the input variations due to the intrinsic oscillating nature of the waves and constant climate changes. This paper deals with the modeling and control of the NEREIDA wave power plant installed in the breakwater of Mutriku in the Basque Coast of Spain. In this context, the design of a novel fuzzy gain scheduled proportional integral (FGS-PI) controller is presented to improve the input airflow control. The fuzzy supervisor adequately changes the controller gains to offer the control scheme an adaptive mechanism against input parameter changes. Two study cases were performed to compare the FGS-PI to a conventional PI. The first test is for the output power optimization and the second is to test the robustness against parameter changes. Results show the superior performance of the proposed control providing power generation improvement and higher robustness even with varying input conditions.
机译:已经提出了许多控制方案,以使用基于Wells-turbine的振荡水柱式发电厂实现更高效的发电。这些控制策略中的大多数旨在避免失速行为,这是韦尔斯涡轮机的一个特征,它会限制发电量。此外,由于海浪的固有振荡特性和持续的气候变化,尽管输入发生变化,该工厂也必须能够保持其性能。本文讨论了安装在西班牙巴斯克海岸Mutriku防波堤上的NEREIDA波浪发电厂的建模和控制。在这种情况下,提出了一种新颖的模糊增益预定比例积分(FGS-PI)控制器的设计,以改善输入气流控制。模糊监控器适当地改变控制器增益,以为控制方案提供一种针对输入参数变化的自适应机制。进行了两个研究案例,以将FGS-PI与常规PI进行比较。第一个测试用于输出功率优化,第二个测试针对参数变化的鲁棒性。结果表明,即使在变化的输入条件下,所提出的控件的优越性能也可提供发电方面的改进和更高的鲁棒性。

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