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Internal model based fault tolerant control strategy for PMS motors

机译:基于内部模型的PMS电机的容错控制策略

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In order to increase the reliability, which is crucial topic in industrial applications and to create a fault tolerant control (FTC) unite based internal model strategy for permanent magnet synchronous motors (PMSM). Two ideas are presented in this paper. The first one is to design a robust controller, which is able to steer the current and the speed variables to their desired references under load torque disturbances. The second one is to design an internal model. This later is activated automatically as the appearances of plant fault to compensate its effect by generate an additive control law. The proposed scheme ensures closed-loop stability (based Lyapunov theory) throughout the entire closed-loop response of the system even in the presence of load torque and plant fault. Simulation results show the high precision of the proposed control techniques, and the good PMSM characteristics in healthy and during the faulty condition.
机译:为了提高可靠性,这是工业应用中至关重要的主题,并为永磁同步电动机(PMSM)创建基于容错控制(FTC)的内部模型策略。本文提出两个想法。第一个是设计一个鲁棒的控制器,该控制器能够在负载转矩扰动下将电流和速度变量转向其所需的参考值。第二个是设计内部模型。稍后会自动激活为植物故障的出现,以通过生成附加控制规律来补偿其影响。所提出的方案即使在存在负载转矩和设备故障的情况下,也可以确保系统整个闭环响应的闭环稳定性(基于Lyapunov理论)。仿真结果表明,所提出的控制技术具有很高的精度,并且在健康状况和故障状况下均具有良好的PMSM特性。

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