日本機械学会論文集
Online ISSN : 2187-9761
ISSN-L : 2187-9761

この記事には本公開記事があります。本公開記事を参照してください。
引用する場合も本公開記事を引用してください。

二自由度制御型並列多重磁気浮上システムの基本特性
成澤 慶宜水野 毅高崎 正也石野 裕二原 正之山口 大介
著者情報
ジャーナル フリー 早期公開

論文ID: 17-00523

この記事には本公開記事があります。
詳細
抄録

A basic single-degree-of-freedom magnetic suspension system consists of one floator, one electromagnet and one amplifier. For multi-degrees-of-freedom control, multiple electromagnets and multiple amplifiers are necessary, which increases the cost of total system. As a means of overcoming this problem, parallel magnetic suspension has been proposed which controls multiple floators or multi-degree-of-freedom motions with a single power amplifier. In this system, all of the suspended points move simultaneously even when a disturbance acts on one of the suspended points solely because all electromagnet's coils are connected. This paper studies the moving direction of each suspended point with respect to a step disturbance in double parallel magnetic suspension system. The analytical study shows that the response direction is determined by the system parameter that relates the response speed of each subsystem. In the slower subsystem, the suspended point moves in the same direction as the applied force while in the faster subsystem, the suspended point moves in the opposite direction. In other words, the slower subsystem has positive stiffness while the faster system has negative stiffness. To confirm this prediction, step responses are measured in the experimental apparatus.

著者関連情報
© 2018 一般社団法人日本機械学会
feedback
Top