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首页> 外文期刊>ISA Transactions >Type-2 fuzzy logic control based MRAS speed estimator for speed sensorless direct torque and flux control of an induction motor drive
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Type-2 fuzzy logic control based MRAS speed estimator for speed sensorless direct torque and flux control of an induction motor drive

机译:基于类型2模糊逻辑控制的MRAS速度估算器,用于感应电动机驱动器的无速度传感器直接转矩和磁通控制

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In this research study, a model reference adaptive system (MRAS) speed estimator for speed sensorless direct torque and flux control (DTFC) of an induction motor drive (IMD) using two adaptation mechanism schemes are proposed to replace the conventional proportional integral controller (PIC). The first adaptation mechanism scheme is based on Type-1 fuzzy logic controller (T1FLC), which is used to achieve high performance sensorless drive in both transient as well as steady state conditions. However, the Type-1 fuzzy sets are certain and unable to work effectively when higher degree of uncertainties presents in the system which can be caused by sudden change in speed or different load disturbances, process noise etc. Therefore, a new Type-2 fuzzy logic controller (T2FLC) based adaptation mechanism scheme is proposed to better handle the higher degree of uncertainties and improves the performance and also robust to various load torque and sudden change in speed conditions, respectively. The detailed performances of various adaptation mechanism schemes are carried out in a MATLAB/Simulink environment with a speed sensor and speed sensorless modes of operation when an IMD is operating under different operating conditions, such as, no-load, load and sudden change in speed, respectively. To validate the different control approaches, the system also implemented on real-time system and adequate results are reported for its validation. (C) 2015 ISA. Published by Elsevier Ltd. All rights reserved.
机译:在这项研究中,提出了一种模型参考自适应系统(MRAS)速度估计器,该模型估计器使用两种自适应机制方案对感应电动机驱动(IMD)的无速度传感器直接转矩和磁通量控制(DTFC)进行了替代,以取代传统的比例积分控制器(PIC )。第一种自适应机制方案基于Type-1模糊逻辑控制器(T1FLC),该控制器用于在瞬态和稳态条件下实现高性能的无传感器驱动。但是,类型1模糊集是确定的,并且当系统中出现较高程度的不确定性(由于速度突然变化或不同的负载扰动,过程噪声等)导致不确定性时,它们将无法有效工作。因此,一种新的类型2模糊集提出了一种基于逻辑控制器(T2FLC)的自适应机制方案,以更好地处理更高程度的不确定性并提高性能,并且分别对各种负载转矩和速度条件的突然变化具有鲁棒性。当IMD在不同的运行条件下(例如空载,负载和速度突然变化)运​​行时,在具有速度传感器和无速度传感器运行模式的MATLAB / Simulink环境中,可以执行各种自适应机制方案的详细性能。 , 分别。为了验证不同的控制方法,该系统还实现了实时系统,并报告了足够的结果进行验证。 (C)2015 ISA。由Elsevier Ltd.出版。保留所有权利。

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