DocumentCode
612605
Title
Frequency-domain mapping approach of stability bounds for loop shaping of bilateral controllers
Author
Evers, G. ; Naus, G.J.L. ; van de Molengraft, M.J.G. ; Steinbuch, Maarten
Author_Institution
Dept. of Mech. Eng., Eindhoven Univ. of Technol., Eindhoven, Netherlands
fYear
2013
fDate
14-17 April 2013
Firstpage
719
Lastpage
724
Abstract
Bilateral control architectures include multiple control elements. In general, the relation between a single control element and the stability of the entire system is non-linear. Therefore, stability is standard evaluated a posteriori, rendering the control design process to be complex and highly iterative. A priori understanding of stability constraints would simplify the design of control elements and, as performance is fundamentally limited by stability, could provide specific guidelines whether and how performance of the bilateral teleoperation system can be optimized. This paper presents a numerical visualization method that enables stability-based control design using classical loopshaping techniques: Frequency-domain Mapping of Bilateral Stability (FMBS). Unlike current stability-based control design approaches, the FMBS method i) is not limited to a fixed control element, a fixed control architecture or system dynamics and ii) enables the implementation of all often used stability criteria. The advantages of the FMBS method are theoretically validated through the use of two test cases, extracted from literature. Using the FMBS method, it is shown that control elements can be redesigned to achieve superior performance.
Keywords
control system synthesis; nonlinear control systems; stability; telecontrol; FMBS; bilateral control architectures; bilateral teleoperation system; control design process; frequency-domain mapping approach; frequency-domain mapping of bilateral stability; loop shaping; loop-shaping techniques; nonlinear system; numerical visualization method; stability bounds; stability constraints; stability-based control design; Control design; Frequency control; Numerical stability; Power system stability; Stability criteria; Three-dimensional displays; Bilateral control; Bode diagram; Haptics; Loop Shaping; Passivity; Stability;
fLanguage
English
Publisher
ieee
Conference_Titel
World Haptics Conference (WHC), 2013
Conference_Location
Daejeon
Print_ISBN
978-1-4799-0087-9
Type
conf
DOI
10.1109/WHC.2013.6548497
Filename
6548497
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