DocumentCode
3415234
Title
A new set of desired objectives for dual-user systems in the presence of unknown communication delay
Author
Shahbazi, Moein ; Talebi, H.A. ; Atashzar, S. Farokh ; Towhidkhah, Farzad ; Patel, Rajni V. ; Shojaei, S.
Author_Institution
Amirkabir Univ. of Technol., Tehran, Iran
fYear
2011
fDate
3-7 July 2011
Firstpage
146
Lastpage
151
Abstract
In this paper, new sets of desired objectives will be introduced for dual user systems. It will be shown that the existing set of objectives leads to eliminate the effect of dominance factor from the picture, while this is an important factor in dual user system. Consequently, in this paper, two sets of desired objective containing the dominance factor are presented, which can be used in variety of applications. Then, an adaptive control methodology is presented to satisfy the desired objectives in the presence of unknown communication delay. Towards this end, new desired impedance equations are introduced for each set of desired objectives. Subsequently, the adaptive impedance control strategy is applied which brings the closed-loop system in the form of the desired impedances. The stability of closed-loop system is investigated through passivity theory and it has been shown that the controller maintains system stability despite of the undesired effects of communication delays. The main feature of the controller is that it does not require a-priori information of delay. In fact, the controller uses delayed signals sent through the communication channels and consequently, there is no necessity to know the delay value. The performance of the proposed control methodology as well as the importance of the proposed sets is validated through experiments.
Keywords
adaptive control; closed loop systems; delay systems; stability; telerobotics; adaptive control methodology; adaptive impedance control strategy; closed-loop system stability; dominance factor; dual-user system; impedance equation; passivity theory; robot; teleoperation; unknown communication delay; Communication channels; Delay; Equations; Force; Impedance; Robots; Stability analysis; Cooperative systems; Dual user systems; Surgical Training; Teleoperation; Unknown Time Delay;
fLanguage
English
Publisher
ieee
Conference_Titel
Advanced Intelligent Mechatronics (AIM), 2011 IEEE/ASME International Conference on
Conference_Location
Budapest
ISSN
2159-6247
Print_ISBN
978-1-4577-0838-1
Type
conf
DOI
10.1109/AIM.2011.6027064
Filename
6027064
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