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Fault Tolerant Control for Speed Sensor Failure in Induction Motor Drive based on Direct Torque Control and Adaptive Stator Flux Observer

机译:基于直接转矩控制和自适应定子磁链观测器的异步电动机速度传感器故障容错控制

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this paper deals with a speed sensor fault tolerant control (FTC) scheme for induction motor (IM) drive based on direct torque control (DTC) and adaptive stator flux observer (ASFO). Many important points are treated in the proposed algorithm, which are the detection of the sensor failure, isolation of the faulty sensor and the reconfiguration of the control system by proper estimation. An adaptive stator flux observer is used instead of classical flux and torque estimator to perform the stator flux components, electromagnetic torque, flux magnitude, rotor position and the estimated rotor speed. Furthermore, a fault detection and isolation (FDI) logic circuitry is used to detect speed sensor fault and isolate it and simultaneously generate a logic impulse to switch to the sensorless mode. The proposed algorithm is simulated in MATLAB/Simulink.
机译:本文提出了一种基于直接转矩控制(DTC)和自适应定子磁通观测器(ASFO)的感应电动机(IM)驱动器速度传感器容错控制(FTC)方案。提出的算法处理了许多重要问题,包括传感器故障的检测,故障传感器的隔离以及通过适当估计对控制系统的重新配置。使用自适应定子磁通观测器代替经典磁通和转矩估算器来执行定子磁通分量,电磁转矩,磁通量,转子位置和估算的转子速度。此外,故障检测和隔离(FDI)逻辑电路用于检测速度传感器故障并对其进行隔离,同时生成逻辑脉冲以切换到无传感器模式。该算法在MATLAB / Simulink中进行了仿真。

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