减小三相异步电动机有限状态预测转矩开关频率变化

S. Azadi, S. Davari, Arya Aghili Ashtiani, C. Garcia, J. Rodrigues
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引用次数: 4

摘要

为了减少开关频率的变化,本研究将一种新的预测直接转矩控制技术应用于感应电动机的预测直接转矩控制中。该方法是对有限集模型预测控制(FS-MPC)的改进。该方法以代价函数考察各切换选项,并根据最小代价函数选择最佳选项。由于FS-MPC中的开关技术是直接开关而不使用调制器,因此开关频率是可变的。该方法采用有源电压矢量和零电压矢量的周期性选择来减小开关周期的变化。因此,零电压被强制施加在有功电压之后,反之亦然。使用这种方法,只检查有效电压矢量的代价函数,并为下一个控制区间选择零电压。这种方式在整个算法中不断重复。通过MATLAB/Simulink仿真对该方法进行了验证。结果表明,该方法减小了开关频率的变化,且在不同工作点下保持稳定。
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Reducing Variation of Switching Frequency in Finite-State Predictive Torque of three-Phase Induction Motor
In this research, a new technique is applied to the predictive direct torque control of the induction motor in order to reduce the variation of the switching frequency. The method is a modification of the finite set model predictive control (FS-MPC). In this method, the switching options are examined in a cost function and the best option is selected based on the minimum cost function. Since the switching technique in FS-MPC is direct switching without using a modulator, the switching frequency will be variable. In the proposed method, the periodic selection of the active and zero voltage vector is used to reduce the variation of the switching period. Thus, the zero voltage is mandatorily exerted after an active voltage and vice versa. With this method, the cost function is only examined for the active voltage vectors and the zero voltage is selected for the next control interval. This manner is repeated in the whole algorithm. The proposed method is evaluated by simulation via MATLAB/Simulink. The results showed that the proposed method reduced the variation of the switching frequency and it was stable for the different operating point.
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