Title
A Read-Write-Validate Approach To Optimistic Concurrency Control For Energy Efficiency Of Resource-Constrained Systems
Abstract
Modern smartphones feature multiple applications which access shared data on the solid state storage within the device. As applications become more complex, contention over this memory resource is becoming an issue. This leads to increased battery drain as the applications are forced to touch the solid state device repeatedly after failing to retrieve or store data due to contention from other applications. We describe an optimistic concurrency control algorithm, combining a novel Read-Write-Validate phase sequence with virtual execution. The protocol is suitable for governing transactions operating on databases residing on resource-constrained devices. Increasing energy efficiency and reducing latency are primary goals for our algorithm. We show that this is achieved by reducing persistent store access, and satisfy real-time requirements via transaction scheduling that affords greater determinism.
Year
DOI
Venue
2013
10.1109/IWCMC.2013.6583765
2013 9TH INTERNATIONAL WIRELESS COMMUNICATIONS AND MOBILE COMPUTING CONFERENCE (IWCMC)
Keywords
Field
DocType
Optimistic concurrency control, transactions, ubiquitous databases
Timestamp-based concurrency control,Isolation (database systems),Serializability,Concurrency control,Computer science,Computer network,Multiversion concurrency control,Distributed concurrency control,Solid-state storage,Optimistic concurrency control,Distributed computing
Conference
ISSN
Citations 
PageRank 
2376-6492
1
0.35
References 
Authors
14
4
Name
Order
Citations
PageRank
Kamal Solaiman120.71
Matthew Brook210.35
Gary Ushaw3399.35
Graham Morgan415019.15