Publication | Closed Access
ALGORITHMS FOR HIGH PERFORMANCE, WIDE-AREA DISTRIBUTED FILE DOWNLOADS
47
Citations
20
References
2003
Year
Distributed File SystemCluster ComputingEngineeringDistributed AlgorithmsComputer ArchitectureParallel StorageParallel ComputingParallel File SystemData ManagementFile SystemsCachingWide-area Storage SystemsFaraway ReplicasComputer ScienceNearby ReplicasEdge ComputingCloud ComputingDistributed Data StoreContent Delivery Network
As peer-to-peer and wide-area storage systems become in vogue, the issue of delivering content that is cached, partitioned and replicated in the wide area, with high performance, becomes of great importance. This paper explores three algorithms for such downloads. The storage model is based on the Network Storage Stack, which allows for flexible sharing and utilization of writable storage as a network resource. The algorithms assume that data is replicated in various storage depots in the wide area, and the data must be delivered to the client either as a downloaded file or as a stream to be consumed by an application, such as a media player. The algorithms are threaded and adaptive, attempting to get good performance from nearby replicas, while still utilizing the faraway replicas. After defining the algorithms, we explore their performance downloading a 50 MB file replicated on six storage depots in the U.S., Europe and Asia, to two clients in different parts of the U.S. One algorithm, called progress-driven redundancy, exhibits excellent performance characteristics for both file and streaming downloads.
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