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Design and analysis of a flatness-based control approach for speed control of drive systems with elastic couplings and uncertain loads

机译:弹性联轴器驱动系统速度控制的平坦控制方法的设计与分析

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Finite stiffness of drive shafts in drive applications can cause undesired torsional oscillations which can lead to a reduced control performance, high stress on the mechanical parts and therefore a reduced lifetime of the drive system. For a high dynamic speed control and the reduction of torsional oscillations, the dynamic of the shaft torsion has to be considered in the control synthesis. Conventional control structures with a PI-based feedback controller are not able to reduce torsional oscillations effectively. Model based control methods are promising to handle this problem. The model based control method presented in this analysis is based on the system property called flatness. It consists of a flatness-based feedforward control and a feedback stabilizing controller. The flatness-based control is designed for drive systems with elastic couplings and analyzed concerning the achievable dynamic performance and the robustness concerning parameter as well as unstructured uncertainties. The effectiveness of the flatness-based control method is verified by simulations and measurements on a laboratory test bench.
机译:驱动应用中的驱动轴的有限刚度可能导致不希望的扭转振荡,这可能导致控制性能降低,对机械部件的高应力,因此减少了驱动系统的寿命。对于高动态速度控制和扭转振荡的减小,在控制合成中必须考虑轴扭转的动态。具有PI基反馈控制器的传统控制结构不能有效地降低扭转振荡。基于模型的控制方法很有希望处理这个问题。该分析中呈现的基于模型的控制方法基于称为平整度的系统属性。它包括平坦的馈电控制和反馈稳定控制器。基于平衡度的控制设计用于具有弹性联轴器的驱动系统,并分析了可实现的动态性能和鲁棒性的参数以及非结构化的不确定性。通过模拟和测量在实验室测试台上验证了平坦的控制方法的有效性。

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