Current Gradient Based Modified Hysteresis Controller for Asymmetrical Six-phase Induction Motor

被引:0
|
作者
Mamdouh M. [1 ]
Abido M.A. [1 ]
机构
[1] Department of Electrical Engineering, King Fahd University of Petroleum and Minerals, Dhahran
关键词
Asymmetrical six-phase; Current control; hysteresis current control; Induction motors; Inverters; Modulation; multi-phase induction motor; Stator windings; Vectors; virtual voltage vectors; Voltage control;
D O I
10.1109/JESTPE.2024.3411715
中图分类号
学科分类号
摘要
This paper proposes a simple current controller for Asymmetrical six-phase induction motor (A6P-IM). The proposed controller is based on allocating both &#x03B1; and &#x03B2; current components in one of eight regions. These regions are classified based on two factors: (1) tracking error which is assessed by current hysteresis band and (2) future tendency of &#x03B1;&#x03B2; currents which can be predicted by calculating current gradients. In order to minimize &#x03B1;&#x03B2; current errors, appropriate control action (<italic>V</italic>&#x03B1;&#x03B2;) should be applied. On the other hand, <italic>xy</italic> components need to be neutralized. As a result, virtual voltage vectors (<italic>VVV</italic>s) are considered and classified based on their &#x03B1;&#x03B2; components. For both &#x03B1; and &#x03B2; current regions, the best magnitude and direction of the available <italic>VVV</italic>s components are assigned. Knowing &#x03B1;&#x03B2; current regions and the best fit &#x03B1;&#x03B2; components, a lookup table is designed to directly select the best <italic>VVV</italic> to be applied. Thus, no iterations or optimization steps are required. The proposed method is characterized by its simplicity and robustness as it does not depend on any machine parameters. The validity of the proposed method is tested experimentally using a one kW A6P-IM. Moreover, its performance is assessed against conventional predictive current control (PCC) and <italic>VVV</italic> based predictive controller <italic>VVV</italic>-PCC. The experimental results indicate that the proposed method has 25% less average switching frequency compared to the <italic>VVV</italic>-PCC method. IEEE
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