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Online adaptation of rotor parameters using fuzzy logic in indirect field oriented vector control of AC induction drives

机译:在交流感应驱动器的间接磁场定向矢量控制中使用模糊逻辑在线调整转子参数

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摘要

Indirect field oriented vector control relies on the estimation of rotor flux and its synchronous angle to ascertain decoupling of torque and flux. This estimation is based on the calculation of slip-speed and current model both of which are prone to the detuning of rotor electrical parameters. This paper aims to resolve this issue by online adapting rotor winding resistance using the reactive power based model reference adaptive system (MRAS) technique in conjunction with a Takagi Sugeno (TS) fuzzy adaptation mechanism. Analysis and design of the controller is explained and performance is evaluated using simulations. The provided results establish the effectiveness of the proposed solution in high performance AC drives.
机译:间接磁场定向矢量控制依靠转子磁通量及其同步角的估计来确定转矩和磁通量的解耦。该估计基于滑差速度和电流模型的计算,两者都易于使转子电参数失谐。本文旨在通过使用基于无功功率的模型参考自适应系统(MRAS)技术和Takagi Sugeno(TS)模糊自适应机制在线自适应调整转子绕组电阻来解决此问题。解释了控制器的分析和设计,并通过仿真评估了性能。提供的结果确定了所提出的解决方案在高性能交流变频器中的有效性。

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