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Experimental study of sliding mode control for a benchmark magnetic bearing system and artificial heart pump suspension

机译:基准磁力轴承系统和人工心脏泵悬架的滑模控制实验研究

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This paper deals with the sliding mode control of a balance beam on two symmetric magnetic bearings. A state-space model of the system is developed and implemented. The sliding mode controller is separated into linear and nonlinear components. A reaching condition to bring the system states to a sliding surface is developed and a continuous function boundary layer is used to avoid chattering. The system performance with a small and large boundary layers is illustrated by experimental results. The effect of a nonlinear component gain to the system performance is analyzed. A new experimental setup is introduced using a real-time operating system, which gives a designer a convenient method to change the controller parameters. Experimental results verify the effectiveness of the sliding mode controller. A potential application of this study to an artificial heart pump system is demonstrated.
机译:本文研究了两个对称磁性轴承上平衡梁的滑模控制。开发并实现了系统的状态空间模型。滑模控制器分为线性和非线性组件。提出了将系统状态带到滑动表面的达到条件,并使用连续函数边界层来避免抖动。实验结果说明了边界层小而大的系统性能。分析了非线性分量增益对系统性能的影响。使用实时操作系统引入了新的实验设置,这为设计人员提供了一种方便的方法来更改控制器参数。实验结果证明了滑模控制器的有效性。证明了这项研究在人工心脏泵系统中的潜在应用。

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