IEEJ Transactions on Industry Applications
Online ISSN : 1348-8163
Print ISSN : 0913-6339
ISSN-L : 0913-6339
Design Method of Robust Stable Two-Degrees-of-Freedom Control System Based on Disturbance Observer and Coprime Factorization
Toshimasa MiyazakiKiyoshi Ohishi
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1997 Volume 117 Issue 5 Pages 572-578

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Abstract
In order to get a high performance and a high accuracy for servo system in several industrial applications, a servo motor system requires a realization of robust control for wide speed range. The conventional robust control system based on disturbance observer can easily design a reference response and a disturbance rejection response, but it often does not consider a robust stable condition. In order to overcome this problem, this paper proposes a new two-degrees-of-freedom control system based on disturbance observer and coprime factorization. The proposed two-degrees-of-freedom control system considers a robust stable condition and a disturbance rejection response systematically. If the frequency band of disturbance rejection is narrow, the proposed system satisfies the robust stability condition
In this paper, the robust speed servo system of DC servo motor is constructed by the proposed two-degrees-of-freedom control system. The experimental results show that the proposed speed servo system well regulates a motor speed robustly for wide speed range, in comparison with the conventional robust speed servo systems.
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