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Speed Sensorless Induction Motor Drives for Electrical Actuators: Schemes, Trends and Tradeoffs

机译:电动执行机构的无速度传感器感应电动机驱动器:方案,趋势和权衡

摘要

For a decade, induction motor drive-based electrical actuators have been under investigation as potential replacement for the conventional hydraulic and pneumatic actuators in aircraft. Advantages of electric actuator include lower weight and size, reduced maintenance and operating costs, improved safety due to the elimination of hazardous fluids and high pressure hydraulic and pneumatic actuators, and increased efficiency. Recently, the emphasis of research on induction motor drives has been on sensorless vector control which eliminates flux and speed sensors mounted on the motor. Also, the development of effective speed and flux estimators has allowed good rotor flux-oriented (RFO) performance at all speeds except those close to zero. Sensorless control has improved the motor performance, compared to the Volts/Hertz (or constant flux) controls. This report evaluates documented schemes for speed sensorless drives, and discusses the trends and tradeoffs involved in selecting a particular scheme. These schemes combine the attributes of the direct and indirect field-oriented control (FOC) or use model adaptive reference systems (MRAS) with a speed-dependent current model for flux estimation which tracks the voltage model-based flux estimator. Many factors are important in comparing the effectiveness of a speed sensorless scheme. Among them are the wide speed range capability, motor parameter insensitivity and noise reduction. Although a number of schemes have been proposed for solving the speed estimation, zero-speed FOC with robustness against parameter variations still remains an area of research for speed sensorless control.
机译:十年来,基于感应电动机驱动的电动执行器一直在研究中,以替代飞机上传统的液压和气动执行器。电动执行器的优点包括重量更轻,尺寸更小,维护和运行成本降低,由于消除了危险流体以及高压液压和气动执行器而提高了安全性,并提高了效率。最近,对感应电动机驱动器的研究重点一直放在无传感器矢量控制上,该控制消除了安装在电动机上的磁通和速度传感器。同样,有效速度和磁通估算器的发展使所有速度下的转子磁通导向(RFO)性能都很好,除了那些接近零的速度。与伏/赫兹(或恒定磁通)控制相比,无传感器控制改善了电动机性能。该报告评估了无速度传感器驱动器的书面方案,并讨论了选择特定方案时的趋势和权衡。这些方案结合了直接和间接磁场定向控制(FOC)的属性,或将模型自适应参考系统(MRAS)与速度相关的电流模型用于磁通量估计,该模型跟踪基于电压模型的磁通量估计器。在比较无速度传感器方案的有效性时,许多因素都很重要。其中包括宽速度范围功能,电动机参数不灵敏性和降噪功能。尽管已经提出了许多解决速度估计的方案,但是对于参数变化具有鲁棒性的零速FOC仍然是无速度传感器控制研究的领域。

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