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Real-Time Sensorless Robust Velocity Controller Applied to a DC-Motor for Emulating a Wind Turbine

机译:应用于DC电动机的实时无传感器鲁棒速度控制器,用于仿真风力涡轮机

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摘要

The wind power systems of variable velocity using a doubly-fed induction generator dominate large-scale electrical generation within renewable energy sources. The usual control goal of the wind systems consists of maximizing the wind energy capture and streamlining the energy conversion process. In addition, these systems are an intermittent energy source due to the variation of the wind velocity. Consequently, the control system designed to establish a reliable operation of the wind system represents the main challenge. Therefore, emulating the operation of the wind turbine by means of an electric motor is a common strategy so that the controller design is focused on the induction generator and its connection to the utility grid. Thus, we propose to emulate the dynamical operation of a wind turbine through a separately excited DC motor driving by a sensor-less velocity controller. This controller is synthesized based on the state-feedback linearization technique combined with the super-twisting algorithm to set a robust closed-loop system in the presence of external disturbances. A robust velocity observer is designed to estimate the rotor velocity based on the armature current measuring. Furthermore, a robust differentiator is designed for estimating the time derivative of the velocity error variable, achieving a reduction in the computational calculus. Experimental tests were carried using a separately excited DC motor coupled with a dynamometer to validate the proposed wind turbine emulator.
机译:使用双馈感应发电机在可再生能源中占据大规模发电的可变速度的风电系统。风系统的通常控制目标包括最大化风能捕获并简化能量转换过程。另外,由于风速的变化,这些系统是间歇能量源。因此,设计用于建立风系统可靠操作的控制系统代表了主要挑战。因此,通过电动机模拟风力涡轮机的操作是一种共同的策略,使得控制器设计聚焦在感应发电机上及其与公用电网的连接。因此,我们建议通过通过传感器的速度控制器通过单独激发的直流电动机进行透过单独激发的直流电动机的动态操作。基于状态反馈线性化技术合成该控制器与超级扭曲算法组合,在存在外部干扰的情况下设定鲁棒闭环系统。鲁棒速度观测器设计用于基于电枢电流测量来估计转子速度。此外,坚固的鉴定器被设计用于估计速度误差变量的时间衍生,实现计算微积分的减少。使用单独激发的直流电动机携带实验测试,该电动机与测功机连接,以验证所提出的风力涡轮机仿真器。

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