Improving Cloud Service Resilience using Brownout-Aware Load-BalancingShow others and affiliations
2014 (English)In: 2014 IEEE 33rd International Symposium On Reliable Distributed Systems (SRDS), IEEE Computer Society, 2014, p. 31-40Conference paper, Published paper (Refereed)
Abstract [en]
We focus on improving resilience of cloud services (e.g., e-commerce website), when correlated or cascading failures lead to computing capacity shortage. We study how to extend the classical cloud service architecture composed of a load-balancer and replicas with a recently proposed self-adaptive paradigm called brownout. Such services are able to reduce their capacity requirements by degrading user experience (e.g., disabling recommendations).
Combining resilience with the brownout paradigm is to date an open practical problem. The issue is to ensure that replica self-adaptivity would not confuse the load-balancing algorithm, overloading replicas that are already struggling with capacity shortage. For example, load-balancing strategies based on response times are not able to decide which replicas should be selected, since the response times are already controlled by the brownout paradigm.
In this paper we propose two novel brownout-aware load-balancing algorithms. To test their practical applicability, we extended the popular lighttpd web server and load-balancer, thus obtaining a production-ready implementation. Experimental evaluation shows that the approach enables cloud services to remain responsive despite cascading failures. Moreover, when compared to Shortest Queue First (SQF), believed to be near-optimal in the non-adaptive case, our algorithms improve user experience by 5%, with high statistical significance, while preserving response time predictability.
Place, publisher, year, edition, pages
IEEE Computer Society, 2014. p. 31-40
Series
Symposium on Reliable Distributed Systems Proceedings, ISSN 1060-9857
Keywords [en]
cloud, load-balancing, self-adaptation, control theory, statistical evaluation
National Category
Computer Systems Control Engineering
Research subject
Computer Science
Identifiers
URN: urn:nbn:se:umu:diva-91327DOI: 10.1109/SRDS.2014.14ISI: 000380439400004Scopus ID: 2-s2.0-84938932324ISBN: 978-1-4799-5584-8 (print)OAI: oai:DiVA.org:umu-91327DiVA, id: diva2:735567
Conference
2014 IEEE 33RD INTERNATIONAL SYMPOSIUM ON RELIABLE DISTRIBUTED SYSTEMS (SRDS), OCT 06-09, 2014, Nara, JAPAN
Projects
Cloud Control
Funder
Swedish Research CouncilELLIIT - The Linköping‐Lund Initiative on IT and Mobile CommunicationsLinnaeus research environment CADICS2014-07-292014-07-292023-08-08Bibliographically approved