Title :
Cloud based virtualization for a calorie measurement e-health mobile application
Author :
Peddi, Sri Vijay Bharat ; Yassine, Abdulsalam ; Shirmohammadi, Shervin
Author_Institution :
Distrib. & Collaborative Virtual Environments Res. Lab., Univ. of Ottawa, Ottawa, ON, Canada
fDate :
June 29 2015-July 3 2015
Abstract :
Smartphones have transformed people approach towards technology. It not only empowers them to use it for communication but also for tracking and maintaining health-fitness via mobile applications. With the increasing number of complex mobile applications, the mobile, with its limited resources (in terms of the computational power and storage capacity) cannot efficiently run these applications autonomously. Similarly our e-health mobile application (Eat Healthy Stay Healthy) requires a platform to run highly computational intensive algorithms like the deep learning (for recognizing food images) and calorie measurement would need higher processing power to perform optimally. We propose a cloud based virtualization model that provides our e-health application with the required computational power that it needs to perform efficiently and at the same time would also give it the flexibility to make use of the various cloud resources. Our model comprises of concepts like virtual swap between various mobile sessions that assist the system for faster processing and intelligent decision mechanism for distributing the task of image processing to cloud servers. By implementing intelligent decision mechanism, the final calorie computation significantly improved by 20.5% while implementing deep learning in cloud.
Keywords :
cloud computing; image recognition; learning (artificial intelligence); medical information systems; mobile computing; smart phones; virtualisation; Eat Healthy Stay Healthy; calorie measurement e-health mobile application; cloud based virtualization; cloud resources; cloud servers; complex mobile applications; computational intensive algorithms; computational power; deep learning; food image recognition; health fitness; image processing; intelligent decision mechanism; mobile sessions; smart phones; storage capacity; task distribution; virtual swap; Androids; Humanoid robots; Servers; Time measurement; Cloud based Virtualization model; Intelligent Decision Mechanism in Cloud; Mobile Cloud Computing; Mobile e-Health Application; Virtual Swap;
Conference_Titel :
Multimedia & Expo Workshops (ICMEW), 2015 IEEE International Conference on
Conference_Location :
Turin
DOI :
10.1109/ICMEW.2015.7169853