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Sliding-mode and fuzzy logic control based MRAS speed estimators for sensorless direct torque and flux control of an induction motor drive

机译:基于滑模和模糊逻辑控制的MRAS速度估算器,用于感应电动机驱动器的无传感器直接转矩和磁通控制

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In this paper, a rotor-flux model reference adaptive system (MRAS) based speed sensorless direct torque and flux control (DTFC) of induction motor drive (IMD) using sliding-mode control (SMC) and fuzzy logic control (FLC) based adaptation mechanism schemes are implemented to replace the conventional constant gain PI-controller (PIC). The SMC is considered to minimize the error dynamics under different loading conditions, which is derived based on Lyapunov theorem. Furthermore, the FLC adaptation scheme is proposed to minimize the chattering phenomenon as well as achieve high performance speed sensorless drive with less error signal. The performance of each adaptation control schemes has been tested for its robustness to sudden change in speed and load disturbance. A detailed comparison of different control schemes are carried out in a MATALB/Simulink environment in both sensor and sensorless modes of operation, when a IMD is operating in forward and reversal motoring under no-load, load, sudden change in speed and sudden zero speed conditions.
机译:本文基于滑模控制(SMC)和模糊逻辑控制(FLC)的基于转子磁通模型参考自适应系统(MRAS)的感应电动机驱动(IMD)的无速度传感器直接转矩和磁通量控制(DTFC)实现了各种机制方案,以取代常规的恒定增益PI控制器(PIC)。 SMC被认为是最小化了基于Lyapunov定理推导的在不同负载条件下的误差动态。此外,提出了FLC自适应方案,以最大程度地减少抖动现象,并以更少的误差信号实现高性能的无传感器驱动。每个适应控制方案的性能已针对其在速度和负载干扰方面突然变化的鲁棒性进行了测试。当IMD在空载,负载,速度突然变化和突然零速度下以正向和反向电动机运行时,在MATALB / Simulink环境中以传感器和无传感器操作模式对不同控制方案进行了详细的比较。情况。

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