Title :
Cloud-Based Query Evaluation for Energy-Efficient Mobile Sensing
Author :
Tianli Mo ; Sen, Satyaki ; Lipyeow Lim ; Misra, Abhishek ; Balan, Rajesh Krishna ; Youngki Lee
Author_Institution :
Univ. of Hawai`i at Manoa, Manoa, HI, USA
Abstract :
In this paper, we reduce the energy overheads of continuous mobile sensing for context-aware applications that are interested in collective context or events. We propose a cloud-based query management and optimization framework, called CloQue, which can support concurrent queries, executing over thousands of individual smartphones. CloQue exploits correlation across context of different users to reduce energy overheads via two key innovations: i) Dynamically reordering the order of predicate processing to preferentially select predicates with not just lower sensing cost and higher selectivity, but that maximally reduce the uncertainty about other context predicates, and ii) intelligently propagating the query evaluation results to dynamically update the uncertainty of other correlated, but yet-to-be evaluated, context predicates. An evaluation, using real cell phone traces from a real world dataset shows significant energy savings (between 30 to 50% compared with traditional short-circuit systems) with little loss in accuracy (5% at most).
Keywords :
cloud computing; energy conservation; mobile computing; power aware computing; query processing; smart phones; CloQue; cloud-based query evaluation; cloud-based query management; concurrent queries; dynamic reordering; energy overhead reduction; energy-efficient mobile sensing; predicate processing order; smartphones; Association rules; Context; Correlation; Engines; Query processing; Sensors; Smart phones; Collaborative Sensing; Mobile Phone Sensing; Power Management; Query Optimization;
Conference_Titel :
Mobile Data Management (MDM), 2014 IEEE 15th International Conference on
Conference_Location :
Brisbane, QLD
DOI :
10.1109/MDM.2014.33