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Design of dynamic surface controller for robust performance of variable speed wind turbine

机译:变速风力发电机鲁棒性能的动态表面控制器设计

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The operation of variable speed wind turbine (VSWT) greatly affects the efficiency and quality of wind power generation. The conventional controllers are not able to improve VSWT performance in the presence of higher degree of non-linearity, uncertain changes in wind speed, and coupling effects in the dynamical modelling. This study presents a controller design based on dynamic surface control (DSC) for a three-bladed, horizontal axis VSWT. The DSC design provides the robust performance while considering the problem of irregularity of wind speed, extraction of maximum available power from the wind, and vibration effect due to tower dynamics. The boundedness and the convergence of the proposed control have been ensured through a formal proof, leading to minimum tracking error. A comparative evaluation of a VSWT performance from the proposed DSC scheme has been analysed with the performances using quantitative feedback theory control, standard wind turbine controller, and conventional proportional integral control. The simulation results confirm that the application of DSC control has effectively produced maximum power and least tracking error than the other three existing controllers, performing robustly in presence of parametric variations upto +/- 15% and external disturbances.
机译:变速风力涡轮机(VSWT)的运行极大地影响了风力发电的效率和质量。在存在更高程度的非线性,风速不确定变化以及动态建模中的耦合效应的情况下,常规控制器无法提高VSWT性能。这项研究提出了基于动态曲面控制(DSC)的三叶片水平轴VSWT的控制器设计。 DSC设计提供了强大的性能,同时考虑了风速的不规则性,风中最大可用功率的提取以及塔架动态产生的振动效应。通过形式证明可以确保所提出控制的有界性和收敛性,从而将跟踪误差降至最低。通过使用定量反馈理论控制,标准风力涡轮机控制器和常规比例积分控制的性能,分析了所提出的DSC方案对VSWT性能的比较评估。仿真结果证实,与其他三个现有控制器相比,DSC控制的应用有效地产生了最大的功率,并产生了最小的跟踪误差,在存在高达+/- 15%的参数变化和外部干扰的情况下仍表现出色。

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