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Sliding mode control of a dual-stator induction generator for wind energy conversion systems

机译:风能转换系统双定子感应发电机的滑模控制

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摘要

This paper presents a sliding mode control (SMC) associated to the field oriented control (FOC) of a dual-stator induction generator (DS1G) based wind energy conversion systems (WECSs). The DSIG has two sets of stator three-phase windings spatially shifted by 30 electrical degrees. The study of operation of the wind turbine leads us to two essential cases: optimization of the power for wind speeds lower than the nominal speed of the turbine and limitation of the power for higher speeds. Conventional electrical grid connected WECS present interesting control demands, due to the intrinsic nonlinear characteristic of wind mills and electric generators. The SMC is a robust nonlinear algorithm which uses discontinuous control to force the system states trajectories to join some specified sliding surface, it has been widely used for its robustness to model parameter uncertainties and external disturbances, is studied. In order to verify the validity of the proposed method, a dynamic model of the proposed system has been simulated, to demonstrate its performance.
机译:本文提出了一种与基于双定子感应发电机(DS1G)的风能转换系统(WECS)的磁场定向控制(FOC)相关的滑模控制(SMC)。 DSIG具有两组定子三相绕组,在空间上错开30电度。对风力涡轮机运行的研究使我们得出两个基本情况:风速低于涡轮机标称速度的功率优化和高速时功率的限制。由于风力发电机和发电机的固有非线性特性,传统的与电网连接的WECS提出了有趣的控制要求。 SMC是一种鲁棒的非线性算法,它使用不连续控制来迫使系统状态轨迹加入某些指定的滑动表面,由于其鲁棒性来建模参数不确定性和外部干扰,因此被广泛使用。为了验证所提方法的有效性,对所提系统的动态模型进行了仿真,以证明其性能。

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