DocumentCode
3613207
Title
Offload Decision Models and the Price of Anarchy in Mobile Cloud Application Ecosystems
Author
Gao, Bo ; He, Ligang ; Jarvis, Stephen A.
Author_Institution
Department of Computer Science, The University of Warwick, Coventry, U.K.
Volume
3
fYear
2015
fDate
7/7/1905 12:00:00 AM
Firstpage
3125
Lastpage
3137
Abstract
With the maturity of technologies, such as HTML5 and JavaScript, and with the increasing popularity of cross-platform frameworks, such as Apache Cordova, mobile cloud computing as a new design paradigm of mobile application developments is becoming increasingly more accessible to developers. Following this trend, future on-device mobile application ecosystems will not only comprise a mixture of native and remote applications, but also include multiple hybrid mobile cloud applications. The resource competition in such ecosystems and its impact over the performance of mobile cloud applications has not yet been studied. In this paper, we study this competition from a game theoretical perspective and examine how it affects the behavior of mobile cloud applications. Three offload decision models of cooperative and non-cooperative nature are constructed and their efficiency compared. We present an extension to the classic load balancing game to model the offload behaviors within a non-cooperative environment. Mixed-strategy Nash equilibria are derived for the non-cooperative offload game with complete information, which further quantifies the price of anarchy in such ecosystems. We present simulation results that demonstrate the differences between each decision model’s efficiency. Our modeling approach facilitates further research in the design of the offload decision engines of mobile cloud applications. Our extension to the classic load balancing game broadens its applicability to real-life applications.
Keywords
Biological system modeling; Cloud computing; Computational modeling; Computer applications; Ecosystems; Energy efficiency; Games; Mobile communication; Mobile computing; Mobile computing; energy-aware; mobile cloud computing;
fLanguage
English
Journal_Title
Access, IEEE
Publisher
ieee
ISSN
2169-3536
Type
jour
DOI
10.1109/ACCESS.2016.2518179
Filename
7389327
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