DocumentCode
3195233
Title
A Multi-criteria Design Optimization Framework for Haptic Interfaces
Author
Unal, Ramazan ; Kiziltas, Gullu ; Patoglu, Volkan
Author_Institution
Sabanci Univ., Istanbul
fYear
2008
fDate
13-14 March 2008
Firstpage
231
Lastpage
238
Abstract
This paper presents a general framework for optimization of haptic interfaces, in particular for haptic interfaces with closed kinematic chains, with respect to multiple design objectives, namely kinematic and dynamic criteria. Both performance measures are discussed and optimization problems for a haptic interface with best worst-case kinematic and dynamic performance are formulated. Non-convex single objective optimization problems are solved with a branch-and-bound type (culling) algorithm. Pareto methods characterizing the trade-off between multiple design criteria are advocated for multi-criteria optimization over widely used scalarization approaches and Normal Boundary Intersection method is applied to efficiently obtain the Pareto-front hyper-surface. The framework is applied to a sample parallel mechanism (five-bar mechanism) and the results are compared with the results of previously published methods in the literature. Finally, dimensional synthesis of a high performance haptic interface utilizing its Pareto-front curve is demonstrated.
Keywords
Pareto optimisation; haptic interfaces; tree searching; Pareto-front hyper-surface; branch-and-bound type algorithm; closed kinematic chains; five-bar mechanism; haptic interfaces; multicriteria design optimization framework; normal boundary intersection method; parallel mechanism; single objective optimization problems; Computer interfaces; Design optimization; Displays; Haptic interfaces; Humans; Impedance; Kinematics; Manipulator dynamics; Physics computing; Rendering (computer graphics); B.8.2 [Hardware]: Performance and Reliability¿Performance Analysis and Design Aids; C.4 [Performance of Systems]: Design studies; H.1.2 [Models and Principles]: User/Machine Systems; H.5.2 [Information Interfaces and Presentation]: User Interfaces¿Haptic I/O; Multi-criteria design optimization; dimensional synthesis of parallel mechanisms; kinematic and dynamic performance of manipulators; optimal design of haptic interfaces;
fLanguage
English
Publisher
ieee
Conference_Titel
Haptic interfaces for virtual environment and teleoperator systems, 2008. haptics 2008. symposium on
Conference_Location
Reno, NE
Print_ISBN
978-1-4244-2005-6
Type
conf
DOI
10.1109/HAPTICS.2008.4479949
Filename
4479949
Link To Document