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Sensor fault-tolerant vector control of induction motors

机译:感应电动机的传感器容错矢量控制

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摘要

The authors propose a multisensor switching strategy for fault-tolerant vector control of induction motors. The proposed strategy combines three current sensors and associated observers that estimate the rotor flux. The estimates provided by the observers are compared at each sampling time by a switching mechanism which selects the sensors ¿observer pair with the smallest error between the estimated flux magnitude and a desired flux reference. The estimates provided by the selected pair are used to implement a vector control law. The authors consider both field-oriented control and direct torque and flux control schemes. Pre-checkable conditions are derived that guarantee fault tolerance under an abrupt fault of a current sensor. These conditions are such that the observers that use measurements from the faulty sensor are automatically avoided by the switching mechanism, thus maintaining good performance levels even in the presence of a faulty sensor. Simulation results under realistic conditions illustrate the effectiveness of the scheme.
机译:作者提出了一种用于感应电动机的容错矢量控制的多传感器切换策略。所提出的策略结合了三个电流传感器和相关的观测器,以估计转子磁通。由观察者提供的估计值在每个采样时间通过切换机制进行比较,该切换机制选择传感器γ观测器对,其估计磁通量大小与所需磁通量参考之间的误差最小。由选定对提供的估计值用于实现矢量控制法则。作者考虑了磁场定向控制以及直接转矩和磁通控制方案。得出了可预检查的条件,以保证在电流传感器的突然故障下的容错能力。这些条件使得切换机构自动避免了使用来自故障传感器的测量值的观察者,从而即使在存在故障传感器的情况下也保持了良好的性能水平。在实际条件下的仿真结果说明了该方案的有效性。

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