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Sliding-Mode Observer and Improved Integrator With DC-Offset Compensation for Flux Estimation in Sensorless-Controlled Induction Motors

机译:具有直流偏移补偿的滑模观测器和改进型积分器,用于无传感器控制的感应电动机的磁通估算

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摘要

Two flux observers for wide speed range direct torque control (DTC) of sensorless induction-motor drives are presented and compared. The first one is a full-order sliding-mode observer with proportional plus integral (PI) compensation, without rotor speed adaptation. The second one is based on a zero phase-delay-improved integrator of the voltage model, which uses only a PI flux amplitude control with stator-flux reference magnitude in the correction loop. In both cases, an estimated dc offset is built up and memorized by the PI integral component and this totally compensates for all dc offsets and drifts originated in the acquisition channels. Two feasible solutions for on-line stator-resistance identification are proposed. Simulation and experimental results prove the accuracy, robustness, and high-dynamic performance of both observers when employed in sensorless DTC drives. The effectiveness of state estimation is confirmed by a steady state and transient sensorless operation at very low speed with rated load torque and step-speed reversal.
机译:提出并比较了用于无传感器感应电动机驱动器的宽速度范围直接转矩控制(DTC)的两个磁通观测器。第一个是具有比例加积分(PI)补偿的全阶滑模观测器,无需调整转子速度。第二个基于电压模型的零相位延迟改进的积分器,该积分器仅在校正回路中使用具有定子磁通参考量的PI磁通幅度控制。在这两种情况下,PI积分组件都会建立并存储一个估计的直流偏移,这将完全补偿所有源自采集通道的直流偏移和漂移。提出了两种在线定子电阻识别的可行方案。仿真和实验结果证明了在无传感器DTC驱动器中使用时,两个观察器的准确性,鲁棒性和高动态性能。状态估计的有效性通过在非常低的速度下具有额定负载转矩和步进速度反转的稳定状态和瞬态无传感器操作来确认。

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