Title :
A Reference Architecture for High-Availability Automatic Failover between PaaS Cloud Providers
Author :
Addo, Ivor D. ; Ahamed, S.I. ; Chu, Winnie C.
Author_Institution :
Marquette Univ., Milwaukee, WI, USA
Abstract :
As the adoption rate of Cloud Computing continues to clamber on among various application archetypes, there is a growing concern for identifying reliable automatic failover solutions between various cloud providers in an attempt to minimize the effect of recent cloud provider outages among diverse always-on and mission-critical applications in healthcare, e-Commerce and ancillary settings. Automatic failover between cloud providers stands out as a solution for course-plotting application reliability requirements in support of high-availability, disaster recovery and high-performance scenarios. Using a case study involving Microsoft´s Windows Azure cloud and the Google App Engine cloud solution, we investigate some of the key characteristics in this area of concern and present a reference architecture for automatic failover between multiple Platform-as-a-Service (PaaS) cloud delivery providers in a bid to maximize the delivery of architecturally significant quality attributes pertaining to High-Availability, Performance and Disaster Recovery in a mission-critical application prototype.
Keywords :
cloud computing; software architecture; Azure cloud; Google App Engine cloud solution; PaaS cloud provider; cloud computing; cloud reference architecture; disaster recovery; high-availability automatic failover; mission-critical application prototype; platform-as-a-service; Availability; Cloud computing; Computer architecture; Degradation; Google; Mission critical systems; Monitoring;
Conference_Titel :
Trustworthy Systems and their Applications (TSA), 2014 International Conference on
Conference_Location :
Taichung
Print_ISBN :
978-1-4799-6565-6
DOI :
10.1109/TSA.2014.12