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Stator-Flux-Oriented Sliding Mode Controller for DFIG with Variable Hysteresis Loop for Limiting Switch Frequency of Rotor-Side Power Converter

机译:用于DFIG的定子磁通式滑动模式控制器,具有可变滞后回路,用于限制转子侧功率转换器的开关频率

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Doubly fed induction generator (DFIG) is the most implemented electric machine in wind energy conversion systems (WECS) due to reduced size converter, active and reactive power control and economic factors. However, the power electronic stage needs an accurate controller that allows to follow the stator power regulation. As a result, Sliding-Mode Control (SMC) has been successfully implemented in DFIG because the natural discontinuous control signals arising from the controller can be used for direct switching of power electronic devices. Yet, switching frequency of SMC depends on the sample rate, controller parameters and electric machine dynamics; this conditions produce a control signal with a variable switching frequency hindering implementation. In this paper a stator-flux-Oriented sliding-mode controller with a hysteresis band that limits the switching frequency of power electronic devices to a set value is presented. This methodology improves previous proposals by limiting switching frequency making implementation more feasible. Simulation results are presented to validate the control methodology.
机译:由于尺寸转换器,主动和无功功率控制和经济因素,双馈馈电发电机(DFIG)是风能转换系统(WECS)中最具所采用的电机。然而,电力电子级需要精确的控制器,允许遵循定子功率调节。结果,在DFIG中成功地实现了滑模控制(SMC),因为从控制器产生的自然不连续控制信号可用于直接切换电力电子设备。然而,SMC的开关频率取决于采样率,控制器参数和电机动力学;该条件产生具有可变开关频率阻碍实现的控制信号。在本文中,呈现了一种定向定向的滑动模式控制器,其具有限制电力电子设备的切换频率到设定值的滞后频带。该方法通过限制开关频率的实施方式更加可行,提高了先前的建议。提出了仿真结果以验证控制方法。

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