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Fuzzy Gain Scheduled-Sliding Mode Rotational Speed Control of an Oscillating Water Column

机译:模糊增益调度滑动模式振荡水柱的转速控制

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摘要

The generated power of Oscillating Water Columns (OWC) based on Wells turbines is limited due to the stalling behavior. Therefore, this paper presents the modeling of an OWC and a rotational speed control using a novel Fuzzy Gain Scheduled-Sliding Mode controller (FGS-SMC) for a stalling-free operation. The proposed SMC-rotational speed control will regulate the turbo-generator angular velocity to avoid the stalling behavior and increase the generated power. In an effort to reduce the fluctuations in the generated power, Fuzzy Logic Supervisors (FLS) were designed to adaptively schedule the switching gains of the SMC controller to reduce the chattering and improve its performance. A comparative study has been carried out between the FGS-SMC, the SMC and uncontrolled OWC using irregular waves and real measured waves. Results show the effectiveness of the proposed controls against the uncontrolled case and the superior performance of FGS-SMC over the SMC ensuring power generation improvement.
机译:基于井筒涡轮机的振荡水柱(OWC)的产生功率受到停滞行为的限制。因此,本文介绍了OWC和转速控制的建模,使用新型模糊增益调度滑动模式控制器(FGS-SMC)进行无转速操作。所提出的SMC转速控制将调节涡轮发电机角速度,以避免停滞行为并增加产生的功率。为了减少所产生的功率波动,模糊逻辑监控器(FLS)旨在自适应地安排SMC控制器的开关增益,以减少抖动并提高其性能。 FGS-SMC,SMC和不受控制的OWC之间进行了比较研究,使用不规则波和实际测量波。结果表明,拟议控制对不受控制的情况和FGS-SMC的优越性的有效性,并在SMC中确保发电改善。

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