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Design and real time implementation of sliding mode supervised fractional controller for wind energy conversion system under sever working conditions

机译:严酷工况下风能转换系统滑模监控式分数控制器的设计与实时实现

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摘要

Wind energy conversion system (WECS) is increasingly taking the place to be the most promised renewable source of energy, which obliges researchers to look for effective control with low cost. Thus, this paper proposes to build a suitable controller for speed control loop to reach the maximum power point of the wind turbine under sever conditions and to ensure the stability of the outer voltage regulation loop to meet high range of load variations. In literature, a major defect of the well-used conventional PI controller is the slow response time and the high damping. Nowadays, intelligent controllers have been used to solve the drawbacks of the conventional ones but they demand high speed calculators and expensive cost. Moreover, many solutions proposed the fractional order PI controller (FO-PI) by extending the order of integration from integer to real order. The FO-PI controller presents also some weakness in steady state caused by the approximation methods. The idea of this paper is to propose a Sliding Mode Supervised Fractional order controller (SMSF) which consists of conventional PI controller, FO-PI controller and sliding mode supervisor (SMS) that employs one of the controllers to ensure good steady and transient states. WECS laboratory prototype is built around real-time dSPACE cards and evaluated to verify the validity of the developed SMSF. The results clearly fulfill the requirements, confirm its high performance in steady and transient states and demonstrate its feasibility and effectiveness.
机译:风能转换系统(WECS)越来越多地成为最有希望的可再生能源,这迫使研究人员必须寻求低成本的有效控制。因此,本文提出为速度控制回路构建一个合适的控制器,使其在严酷条件下达到风力发电机的最大功率点,并确保外部电压调节回路的稳定性,以适应大范围的负载变化。在文献中,常用的PI控制器的主要缺点是响应时间慢和阻尼高。如今,智能控制器已被用来解决传统控制器的缺点,但是它们需要高速计算器和昂贵的成本。此外,许多解决方案提出了分数阶PI控制器(FO-PI),方法是将积分阶数从整数扩展到实数阶。 FO-PI控制器还表现出由近似方法引起的稳态下的一些弱点。本文的思想是提出一种由传统PI控制器,FO-PI控制器和滑模监控器(SMS)组成的滑模监督分数阶控制器(SMSF),该控制器采用其中一种控制器来确保良好的稳态和瞬态状态。 WECS实验室原型是围绕实时dSPACE卡构建的,并进行了评估以验证开发的SMSF的有效性。结果清楚地满足了要求,确认了其在稳态和瞬态下的高性能,并证明了其可行性和有效性。

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