首页> 外文会议>International Conference on Motion and Vibration Control >Lateral Vibration Attenuation by the Dynamic Adjustment of Bias Currents in Magnetic Suspension System
【24h】

Lateral Vibration Attenuation by the Dynamic Adjustment of Bias Currents in Magnetic Suspension System

机译:横向振动衰减通过磁悬浮系统中偏置电流的动态调节

获取原文

摘要

Switching stiffness control is applied to attenuate vibration in the lateral directions in an active magnetic suspension system with electromagnets operated in differential mode. The magnetic suspension system using the attractive force between magnetized bodies is inherently unstable in the normal direction so that feedback control is necessary to achieve stable suspension. In contrast, it can be stable in the lateral directions due to the edge effects in the magnetic circuits. In several applications, such passive suspension is used in combination with the active one to reduce cost and space. However, damping in the lateral directions is generally small. As a result, induced vibrations in these directions are hardly attenuated. To suppress such vibration without any additional actuator (electromagnet), switching stiffness control is applied to an magnetic suspension system operated in the differential mode. The stiffness in the lateral direction is adjusted by varying the bias currents of an opposed pair of electromagnets located in the normal direction simultaneously according to the motion of the suspended object. When the varied bias currents are adjusted for the additive normal forces cancel each other, such control does not affect the suspension in the normal direction. The effectiveness of the proposed control methods is confirmed experimentally.
机译:施加切换刚度控制以在具有以差分模式下操作的电磁磁悬架系统中的主动磁悬浮系统中的横向振动。使用磁化体之间的吸引力的磁悬浮系统在法线方向上固有地不稳定,使得需要反馈控制以实现稳定的悬浮液。相反,由于磁路中的边缘效应,它可以在横向方向上稳定。在若干应用中,这种被动悬架与活性物体结合使用以降低成本和空间。然而,在横向方向上阻尼通常很小。结果,这些方向上的感应振动难以衰减。为了抑制没有任何附加致动器(电磁铁)的这种振动,将切换刚度控制施加到以差分模式操作的磁悬浮系统。通过根据悬挂物体的运动改变位于正常方向上的相对电磁体的偏置电流来调节横向的刚度。当调节变化的偏置电流对于添加到正常力彼此抵消时,这种控制不会影响正常方向的悬架。实验证实了所提出的控制方法的有效性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号