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Adjustable-pitch and variable-speed control of wind turbines using nonlinear algorithm

机译:基于非线性算法的风轮机变桨变速控制

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Variable-speed, horizontal axis wind turbines use adjustable-pitch and converter control to meet specified objectives for three regions of operation. This paper focuses on controller design for the constant power production regime. We develop a control scheme for wind turbine using nonlinear control theory. Based on mechanical dynamics, a nonlinear control algorithm is derived to on-line adjustable-pitch. A simple, rigid, nonlinear turbine model is used to systematically perform trade-off studies between two performance metrics. Minimization of both the deviation of the rotor speed from the desired speed and the motion of the actuator is desired. The effectiveness of the algorithm is verified via computer simulation with varying operating conditions. The project is sponsored by 863-multi-megawatt wind turbines control system.
机译:变速,水平轴风力涡轮机使用变桨距和变矩器控制来满足三个运行区域的指定目标。本文主要针对恒定功率产生方案的控制器设计。我们使用非线性控制理论开发了一种风力发电机的控制方案。基于机械动力学,将非线性控制算法推导至在线可调螺距。一个简单的,刚性的,非线性的涡轮机模型用于系统地执行两个性能指标之间的权衡研究。期望使转子速度与期望速度的偏差以及致动器的运动最小化。通过在不同操作条件下进行计算机仿真,验证了该算法的有效性。该项目是由863兆瓦级风力涡轮机控制系统赞助的。

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