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Torque controller of a doubly-fed induction generator impelled by a DC motor for wind system applications

机译:由直流电动机驱动的双馈感应发电机的转矩控制器,用于风力系统应用

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摘要

The authors propose robust non-linear controllers for a wind system. The proposed controllers are based on a combination of the block control linearisation and super-twisting algorithm, as a second-order sliding mode technique. The main control loop is designed to regulate the electromagnetic torque and stator power factor of a doubly-fed induction generator which is connected to the grid. The generator is mechanically coupled with a DC motor, which can emulate the wind turbine operation. Therefore, an auxiliary control loop is designed to control the DC motor velocity. Additionally, a grid-side converter controller is proposed to regulate the DC-link voltage into AC/DC/AC converter, and displacement factor of the energy flow between the rotor and the grid. A robust stability analysis of the complete closed-loop system under external disturbances is presented. The robustness of the proposed control schemes is validated in real time using a workbench, which consists of a motor–generator group, AC/DC/AC electronic drive and dSPACE DS 1104 controller boards.
机译:作者提出了用于风力系统的鲁棒非线性控制器。所提出的控制器基于块控制线性化和超扭曲算法的组合,是一种二阶滑模技术。主控制回路设计用于调节与电网连接的双馈感应发电机的电磁转矩和定子功率因数。发电机与直流电动机机械耦合,直流电动机可以模拟风力涡轮机的运行。因此,设计了一个辅助控制回路来控制直流电动机的速度。另外,提出了一种电网侧变流器控制器,以调节进入AC / DC / AC变流器的直流母线电压以及转子和电网之间的能量流的位移因数。提出了在外部干扰下完整闭环系统的鲁棒稳定性分析。使用工作台实时验证了所提出的控制方案的鲁棒性,该工作台由电动发电机组,AC / DC / AC电子驱动器和dSPACE DS 1104控制器板组成。

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