采用分数阶超扭转算法改进了dfig dftc在风力发电中的应用

A. Almakki, Andrey Mazalov
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引用次数: 3

摘要

背景:直接磁链和转矩控制是一种鲁棒、简单和替代的方法控制公式,不需要分解成对称的组件;直接磁链和转矩控制方案由于实现简单而被证明是双馈感应发电机的优势。目的:利用分数阶超扭转算法和改进的空间矢量调制技术,实现双馈感应发电机电磁转矩和转子磁链波动的最小化。方法:直接磁链和转矩控制的主要作用是调节和控制风力发电系统双馈感应发电机的电磁转矩和转子磁链。直接磁链和转矩控制是传统的控制算法和鲁棒技术。分数阶超扭转算法是一种新的非线性控制器。与其他方法相比,该方法具有鲁棒控制器和简单算法的特点,具有良好的电流谐波畸变。新颖:提出了一种分数阶超扭转算法。提出了基于传统超扭转算法和分数阶微积分的非线性控制器结构,以获得鲁棒控制器,减小双馈感应发电机的电磁转矩和转子磁链波动。在我们的研究中,我们将1.5 MW双馈感应发电机集成到一个单转子风力涡轮机系统中,以最小化电磁转矩,定子电流,转子磁链波动。结果如图所示,与传统控制方案相比,分数阶超扭算法改善了效率,特别是使电磁转矩和转子磁链最小,使定子电流谐波畸变最小(0.16%)。结果如图所示,与传统控制方案相比,分数阶超扭算法改善了效率,特别是使电磁转矩和转子磁链最小,使定子电流谐波畸变最小(0.16%)。结论:直接磁链和转矩控制是一种鲁棒、简单、可替代的方法控制公式,不需要分解成对称分量;直接磁链和转矩控制方案由于实现简单而被证明是双馈感应发电机的优势。
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Improved dfig dftc by using a fractional-order super twisting algorithms in wind power application
Background: The direct flux and torque control are a robust, simple, and alternative approach control formulation that does not require decomposition into symmetrical components; the direct flux and torque control schemes have been proved to be preponderant for doubly-fed induction generators due to the simple implementation. Aim: This work presents the minimization of electromagnetic torque and rotor flux undulations of doubly-fed induction generators using fractional-order super twisting algorithms and modified space vector modulation techniques. Methods: The main role of direct flux and torque control is to regulate and control the electromagnetic torque and rotor flux of doubly-fed induction generators for wind turbine systems. The direct flux and torque control is a traditional control algorithm and robust technique. Fractional-order super twisting algorithms are a new and proposed nonlinear controller; characterized by a robust controller and a simpler algorithm, which gives a good harmonic distortion of current compared to other methods. Novelty: The A fractional-order super twisting algorithm is proposed. Proposed nonlinear controller construction is based on the traditional super twisting algorithm and fractional calculus to obtain a robust controller and reduces the electromagnetic torque and rotor flux undulations of doubly-fed induction generators. We use in our study a 1.5 MW doubly-fed induction generator integrated into a single-rotor wind turbine system to minimizes the electromagnetic torque, stator current, rotor flux undulations. As shown in the results figures using fractional-order super twisting algorithms ameliorate effectiveness especially minimizes the electromagnetic torque and rotor flux, and minimizes harmonic distortion of stator current (0.16 %) compared to the traditional control scheme. Results: As shown in the results figures using fractional-order super twisting algorithms ameliorate effectiveness especially minimizes the electromagnetic torque and rotor flux, and minimizes harmonic distortion of stator current (0.16 %) compared to the traditional control scheme. Conclusion: The direct flux and torque control are a robust, simple, and alternative approach control formulation that does not require decomposition into symmetrical components; the direct flux and torque control schemes have been proved to be preponderant for doubly-fed induction generators due to the simple implementation.
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