具有前馈转矩补偿控制的无刷双馈感应电机

Ramin Tafazzoli Mehriardi, Nima Farrokhzad Ershad, Babak Rahrovi, M. Ehsani
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引用次数: 2

摘要

与双馈感应电机相比,无刷双馈感应电机的动态和稳态特性更为复杂。这一事实是由于期望的同步转矩与不期望的异步转矩(扰动转矩)共存。本文首先推导了作为系统输入的控制机(CM)电流与作为系统输出的总输出转矩之间的解析关系。该关系在频率域和时间域中表示,以便更清楚地了解BDFIM的动态行为。在引入的方程中,考虑了在BDFIM中共存的所有类型的力矩。然后,通过检验得到的关系,提出了一种具有前馈转矩补偿的电机驱动器,该驱动器主动预测BDFIM的动态行为,并试图消除不良的动态响应。比较了开环和闭环两种转矩控制驱动方案下带转矩补偿和不带转矩补偿的BDFIM的动态特性,并给出了仿真结果。为了得到适合BDFIM的动态模型,提出了面向场的控制假设。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Brushless Doubly-Fed Induction Machine with Feed-Forward Torque Compensation Control
Compared to Doubly-Fed Induction Machines (DFIMs), the dynamic and steady-state behavior of the Brushless Doubly-Fed Induction Machine (BDFIM) is more complicated. This fact is due to the coexistence of the undesirable asynchronous torques (disturbance torques) with the expected synchronous torque. In this paper, first, an analytical relationship between Control Machine (CM) currents, regarded as the system's input, and the total output torque, regarded as the system's output is derived. The relationship is expressed in both frequency and time domains to have a more clear vision of the BDFIM dynamic behavior. In the introduced equations, all types of torques that coexist in the BDFIM are considered. Then, by examining the obtained relationship, a motor drive with Feed-forward torque compensation is proposed that actively predicts the dynamic behavior of the BDFIM and attempts to eliminate undesirable dynamic responses. The dynamic behavior of the BDFIM with and without torque compensation method are compared for both open-loop and closed-loop torque control drive schemes, and the simulation results are presented. Field oriented control assumptions are made to obtain a suitable dynamic model for the BDFIM.
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