Rapid Position Control using Feedforward Control based on Inverse Dynamics : The Case of the Mechanical System of Linear DC Motor and Beam
スポンサーリンク
概要
- 論文の詳細を見る
A position control system consisting of a linear DC motor and a beam, based on inverse dynamics, is proposed. The rapid and exact control performance is confirmed experimentally and theoretically. In the experiment, the linear DC motor is made of an aluminum coil frame or an acrylic resin coil frame. It is confirmed that, by the present control method, the moving part of the linear DC motor can be controlled accurately to the position control command for an arbitrary settling time without undesirable mechanical vibrations. When the settling time is comparatively long, the wave shape of the control current of the motor is affected mainly by the bending force of the beam. Then, with a decreasing settling time, the inertial force has significant effects on the wave shape of the tontrol current. Furthermore, the numerical simulation results obtained with the finite element method agree well with the experimental results.
- 一般社団法人日本機械学会の論文
- 1991-12-15
著者
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KURINO Tsunehisa
Society of Non-Traditional Technology(SNTT)
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Kawanabe Takashi
Department Of Energy Science And Engineering School Of Engineering Tokai University
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Kurino Tsunehisa
The Society Of Non-traditional Technology
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Nezu K
Gunma Univ. Gunma Jpn
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Nezu Kikuo
Faculty Of Engineering Gunma University
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Nezu Kikuo
Faculty Of Engineering Gumma University
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Kiyokawa T
Department Of Energy Science And Engineering School Of Engineering Tokai University
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KOJIMA Hiroyuki
Faculty of Engineering, Gunma University
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Kojima Hiroyuki
Faculty Of Engineering Gunma University
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Sakamoto Kenji
Sanyo Electric Co.
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KAWANABE Takashi
Sanyo Electric Co.
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KOJIMA Hideo
Nissan Motor Co.
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Kojima Hiroyuki
Facult Of Engineering Gunma University
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