首页> 外文会议>ICMIT 2007;International Conference on Mechatronics and Information Technology; 20071205-06;20071205-06; Gifu(JP);Gifu(JP) >Electromagnetic levitation control system for a thin steel plate (Optimal placement of permanent magnets for levitation assist using genetic algorithm)
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Electromagnetic levitation control system for a thin steel plate (Optimal placement of permanent magnets for levitation assist using genetic algorithm)

机译:薄钢板的电磁悬浮控制系统(使用遗传算法优化永磁体的悬浮辅助)

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摘要

For thin steel plates, which are used in many industrial products including those of the automobile industry, we have proposed a magnetic levitation control system and confirmed its realization by means of a digital control experiment. However, the use of a limited number of electromagnets cannot suppress static deflection and high-order-mode elastic vibration, which are characteristics of a flexible magnetic material. To solve this problem, we have proposed a hybrid levitation control system for the thin steel plate using the magnetic force generated by permanent magnets, which have no operational costs, in the areas where the attractive force of the electromagnets is negligible. In this study, we attempt to determine the optimal placement of permanent magnets to reduce the deflection and elastic vibration of a thin steel plate under the generated magnetic field. To verify the usefulness of optimal placement of the permanent magnets, experiments concerning elastic vibration were performed on a magnetically levitated thin steel plate. As a result, it was confirmed that the control performance was improved by the optimal placement of the permanent magnets.
机译:对于用于包括汽车工业在内的许多工业产品的薄钢板,我们提出了一种磁悬浮控制系统,并通过数字控制实验证实了其实现。然而,使用有限数量的电磁体不能抑制作为挠性磁性材料的特性的静态挠曲和高阶模态弹性振动。为了解决该问题,我们提出了一种在电磁体的吸引力可忽略不计的区域中使用由永磁体产生的磁力的,用于薄钢板的混合悬浮控制系统,该磁力没有操作成本。在这项研究中,我们试图确定永磁体的最佳位置,以减少薄钢板在产生磁场下的挠度和弹性振动。为了验证永磁体最佳放置的有用性,在磁悬浮薄钢板上进行了有关弹性振动的实验。结果,证实了通过最佳放置永磁体改善了控制性能。

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