Title
Optimization model for web based multimodal interactive simulations
Abstract
We proposed a optimization model for web based interactive simulations.Proposed method includes identification, optimization and update phases.Nonlinear model can be converted to linear optimization model.Optimization model handles the infeasible solutions.Final model effectively modifies simulation based on device specification. This paper presents a technique for optimizing the performance of web based multimodal interactive simulations. For such applications where visual quality and the performance of simulations directly influence user experience, overloading of hardware resources may result in unsatisfactory reduction in the quality of the simulation and user satisfaction. However, optimization of simulation performance on individual hardware platforms is not practical. Hence, we present a mixed integer programming model to optimize the performance of graphical rendering and simulation performance while satisfying application specific constraints. Our approach includes three distinct phases: identification, optimization and update. In the identification phase, the computing and rendering capabilities of the client device are evaluated using an exploratory proxy code. This data is utilized in conjunction with user specified design requirements in the optimization phase to ensure best possible computational resource allocation. The optimum solution is used for rendering (e.g. texture size, canvas resolution) and simulation parameters (e.g. simulation domain) in the update phase. Test results are presented on multiple hardware platforms with diverse computing and graphics capabilities to demonstrate the effectiveness of our approach.
Year
DOI
Venue
2015
10.1016/j.eswa.2015.02.026
Expert Syst. Appl.
Keywords
Field
DocType
Interactive Web environments for Medicine,Optimization,Simulation,Virtual reality,Web-based interaction
Graphics,Data mining,User experience design,Virtual reality,Simulation,Computer science,Integer programming,Linear programming,Web application,Rendering (computer graphics),Computer engineering,Computational resource
Journal
Volume
Issue
ISSN
42
12
0957-4174
Citations 
PageRank 
References 
0
0.34
30
Authors
3
Name
Order
Citations
PageRank
Tansel Halic18213.71
Woojin Ahn22010.02
Suvranu De321934.31