控制理论(社会学)
定子
电压
扭矩
病媒控制
模型预测控制
占空比
灵敏度(控制系统)
直接转矩控制
静止坐标系
计算机科学
工程类
数学
感应电动机
控制(管理)
人工智能
电子工程
物理
电气工程
热力学
机械工程
作者
Xianglin Li,Zhiwei Xue,Xueyu Yan,Lixia Zhang,Wenzhong Ma,Wei Hua
标识
DOI:10.1109/tpel.2021.3073137
摘要
In the double-vector-based model predictive torque control (MPTC), two voltage vectors are applied in one control period. Due to a large number of possible combinations among voltage vectors, the determination of optimal voltage vector pair is often complicated. This article proposes a new approach to reduce the number of candidate active voltage vectors. The concept is to preselect the active voltage vectors according to the stator flux vector error. The proposed MPTC is implemented in a stationary frame and avoids the complicated coordinate transformation as well as the tangent inverse calculations. Furthermore, a promising approach is conceived for calculating the duty cycle of active voltage vector, which can contribute to the less dependence on the system model, thus alleviating the sensitivity to motor parameter variations. To further improve the steady-state performance, a modified three-vector-based MPTC is newly put forward. Meanwhile, the proposed duty cycle calculation method is used to achieve the deadbeat control of torque and stator flux. Theoretical analyses and experimental results are given to verify the effectiveness of the proposed MPTC methods.
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