Title :
Self-Acting Load Balancing with Parallel Sub File Migration for Parallel File System
Author :
Dong, Bin ; Li, Xiuqiao ; Xiao, Limin ; Ruan, Li ; Yu, Binbin
Author_Institution :
Sch. Of Comput. Sci. & Eng., Beihang Univ., Beijing, China
Abstract :
With number of I/O servers increasing, the load imbalance among them becomes an emerging challenge in using high-end computing system effectively. But most of contemporary file systems like PVFS2 and Lustre lack load balancing to optimize parallel I/O performance when facing large number of I/O servers. To address this problem, this paper proposes self-acting load balancing for parallel file systems. The proposed self-acting load balancing builds on dynamic file migration, and borrows the ideas from intelligent computing to enable automatic load balancing. Furthermore, in order to support promising scalability, the self-acting load balancing is fundamentally based on distributed architecture, which also permits parallel file migrations to accelerate balancing progress. By taking PVFS2 as basic platform, we implement the self-acting load balancing, and the experiments show that PVFS2 with self-acting load balancing can reduce the average response time and improve performance of parallel I/O obviously compared with original PVFS2.
Keywords :
file organisation; parallel processing; resource allocation; I/O server; Lustre lack load balancing; PVFS2; automatic load balancing; distributed architecture; dynamic file migration; high end computing system; intelligent computing; load imbalance; parallel sub file migration; self-acting load balancing; Acceleration; Computer architecture; Computer science; Concurrent computing; Delay; File servers; File systems; Intelligent agent; Load management; Scalability;
Conference_Titel :
Computational Science and Optimization (CSO), 2010 Third International Joint Conference on
Conference_Location :
Huangshan, Anhui
Print_ISBN :
978-1-4244-6812-6
Electronic_ISBN :
978-1-4244-6813-3
DOI :
10.1109/CSO.2010.37