Title :
Load balancing techniques for distributed stream processing applications in overlay environments
Author :
Drougas, Yannis ; Repantis, Thomas ; Kalogeraki, Vana
Author_Institution :
Dept. of Comput. Sci. & Eng., California Univ., Riverside, CA
Abstract :
Service overlays that support distributed stream processing applications are increasingly being deployed in wide-area environments. The inherent heterogeneous, dynamic and large-scale nature of these systems makes it difficult to meet the quality of service (QoS) requirements of the distributed stream processing applications. In this paper we address the load balancing problem for distributed stream processing applications and present a decentralized and adaptive algorithm that allows the composition of distributed stream processing applications on the fly across a large-scale system, while satisfying their QoS demands. The algorithm fairly distributes the load on the resources and adapts dynamically to changes in the resource utilization or the QoS requirements of the applications. Our experimental results demonstrate the scalability, efficiency and performance of our approach
Keywords :
peer-to-peer computing; quality of service; resource allocation; QoS requirements; adaptive algorithm; decentralized algorithm; distributed stream processing; large-scale service overlays; load balancing; overlay environments; peer-to-peer overlays; quality of service; resource utilization; wide-area environments; Application software; Bandwidth; Computer science; Large-scale systems; Load management; Peer to peer computing; Quality of service; Resource management; Scalability; Streaming media;
Conference_Titel :
Object and Component-Oriented Real-Time Distributed Computing, 2006. ISORC 2006. Ninth IEEE International Symposium on
Conference_Location :
Gyeongju
Print_ISBN :
0-7695-2561-X
DOI :
10.1109/ISORC.2006.47