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Anti-Disturbance Model Predictive Torque Control of High-Altitude Ventilator Induction Machine with Extend MTPA Operation

机译:MTPA扩展运行的高海拔风机感应电机的抗干扰模型预测转矩控制

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This paper proposes anti-disturbance model predictive torque control (ADMPTC) of high-altitude ventilator induction machine with extended maximum torque per ampere (EMTPA) operation. Finite control set-mode predictive control (FCS-MPC) has become prevalent in recent years because of its intuitive concept and flexible ability to deal with nonlinearity and constraints of electrical drives, while belonging to open loop control strategy, FCS-MPC has static error due to load torque disturbance. In this paper, ADMPTC is proposed to compensate load torque disturbance using extended state observer. Due to high-altitude thin air, high-altitude ventilator induction machine operates at high-speed light-load state. In order to enhance the efficiency of high-ventilator induction machine, this paper proposes stator flux-based MTPA operation at constant torque mode, and then extends this concept to constant power mode, which is called EMTPA. Finally, the proposed algorithm in this paper is effectively verified by experiments, which is compared with traditional control approach.
机译:本文提出了一种具有扩展的每安培最大转矩(EMTPA)操作的高空呼吸机感应电机的抗扰模型预测转矩控制(ADMPTC)。有限控制集模式预测控制(FCS-MPC)由于其直观的概念和灵活的能力来处理电气驱动器的非线性和约束,近年来已变得越来越普遍,而FCS-MPC属于开环控制策略,具有静态误差。由于负载扭矩干扰。在本文中,提出了ADMPTC来使用扩展状态观测器来补偿负载转矩扰动。由于高空稀薄的空气,高空呼吸机感应机在高速轻载状态下运行。为了提高高通风机感应电机的效率,本文提出了基于定子磁通的MTPA在恒转矩模式下运行,然后将此概念扩展到恒功率模式,即EMTPA。最后,通过实验对本文提出的算法进行了有效验证,并与传统控制方法进行了比较。

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