Consideration on Elastic Vibration Control of a Magnetically Levitated Thin Steel Plate Using Sliding Mode Control

S. Hasegawa, Y. Oshinoya, K. Ishibashi
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引用次数: 14

Abstract

We have proposed a magnetic levitation control system for a sheet steel and confirmed the realization by a digital control experiment. However, because of the strong nonlineality of the attractive force of the electromagnet and the various uncertainties in the circuit current such as changes in the resistance due to heat generation of the electromagnet, stability of levitation has not been sufficiently ensured. In this study, we aim to develop a noncontact support system for thin steel plates with high robustness using sliding mode control, which is tolerant to factors such as disturbances within control signals and external forces affecting the system. As a result, it was verified that the suppressive effect of the sliding mode control on disturbances is sufficient, and that the application of the continuous model provides the construction of a system with robustness to the disturbance of the external forces.
基于滑模控制的磁悬浮薄钢板弹性振动控制研究
提出了一种钢板磁悬浮控制系统,并通过数字控制实验对其实现进行了验证。然而,由于电磁铁的吸引力具有很强的非线性,加上电路电流中的各种不确定性,如电磁铁发热引起的电阻变化等,使得悬浮的稳定性没有得到充分保证。在本研究中,我们的目标是利用滑模控制开发一种具有高鲁棒性的薄钢板非接触支撑系统,该系统可以容忍控制信号中的干扰和影响系统的外力等因素。结果验证了滑模控制对扰动的抑制效果是充分的,连续模型的应用为系统的构造提供了对外力扰动的鲁棒性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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