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High-quality torque control at zero and very high speed operation

机译:零速和超高速运行时的高质量转矩控制

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This article focuses on the design and analysis of a direct field orientation (DFO) approach based upon a closed-loop loop rotor flux observer. The approach is ideally suited for applications requiring both zero and very high (i.e., several times base) speed operation. Such applications are common in manufacturing automation where both zero speed position control and high traverse rates with controlled position trajectories are required. Examples include robot motion control systems as used for assembly and the more traditional machining center axis control. The quality of the proposed approach is largely based on the unique structure of its flux observer. The observer effectively combines the best accuracy attributes of rotor flux indirect (feedforward) field orientation (IFO) and stator flux DFO. The parameter sensitivity is similar to IFO at low and zero speeds and to stator flux DFO at high speeds. The closed-loop structure of the observer provides a smooth transition between two open-loop rotor flux observers referred to as the current and voltage models in a deterministic manner set by the closed-loop bandwidth (eigenvalues). The proposed DFO approach is analytically evaluated in comparison with both IFO and stator flux DFO. Experimental results verify the viability of this approach.
机译:本文重点介绍基于闭环转子磁通观测器的直接磁场定向(DFO)方法的设计和分析。该方法非常适合要求零速和极高速度(即几倍于基本速度)运行的应用。这种应用在制造自动化中很常见,既需要零速位置控制,又需要具有受控位置轨迹的高移动速度。示例包括用于组装的机器人运动控制系统和更传统的加工中心轴控制。所提出方法的质量很大程度上取决于其通量观测器的独特结构。观察者有效地结合了转子磁通量间接(前馈)磁场方向(IFO)和定子磁通量DFO的最佳精度属性。参数灵敏度在低速和零速时类似于IFO,在高速时类似于定子磁通DFO。观测器的闭环结构以确定的方式由闭环带宽(特征值)设置,从而在两个称为电流和电压模型的开环转子磁通观测器之间提供平滑过渡。与IFO和定子磁通DFO相比,对提出的DFO方法进行了分析评估。实验结果证明了这种方法的可行性。

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