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Combined model-based sliding-mode controller for a three-phase voltage source inverter fed induction motor drive

机译:基于模型的组合滑模控制器,用于三相电压源逆变器供电的感应电动机驱动器

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The chattering phenomenon associated with the use of Sliding Mode Controllers (SMC) is considered a major drawback of the robust controllers. Ideally, SMCs are to exhibit infinite switching frequency but this is always compromised by the existence of parasitic dynamics which add to the input relative degree of the system and leads to high but finite switching frequency. The performance and robustness of the controller can be closely linked to the resulting switching frequency. Often, when controlling the speed of induction motors, SMCs are applied and used to generate what is assumed to be smooth control signals. These control signals are used as modulation inputs for various carrier based modulation schemes. In doing so, the sliding action of the controller is disrupted as the SMC's switching frequency is limited by the finite carrier frequency of the modulation process. This effect is carefully analysed in this paper. An alternative is considered in this paper where SMCs are applied to the inner most control loop without the use of any carrier based modulation schemes.
机译:与滑模控制器(SMC)的使用相关的颤振现象被认为是鲁棒控制器的主要缺点。理想情况下,SMC要表现出无限的开关频率,但这总是会因寄生动力学的存在而受到损害,这些寄生动力学会增加系统的输入相对程度,并导致较高但有限的开关频率。控制器的性能和鲁棒性可以与最终的开关频率紧密联系在一起。通常,当控制感应电动机的速度时,SMC被应用并用于生成假定为平滑控制信号的信号。这些控制信号用作各种基于载波的调制方案的调制输入。这样做会破坏控制器的滑动,因为SMC的开关频率受调制过程的有限载波频率限制。本文对此效果进行了仔细分析。本文考虑了一种替代方法,其中将SMC应用于最内部的控制环路,而无需使用任何基于载波的调制方案。

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