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File fragmentation over an unreliable channel

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conference contribution
posted on 2024-07-13, 02:26 authored by Jayakrishnan Nair, Martin Andreasson, Lachlan L. H. Andrew, Steven H. Low, John C. Doyle
It has been recently discovered that heavy-tailed file completion time can result from protocol interaction even when file sizes are light-tailed. A key to this phenomenon is the RESTART feature where if a file transfer is interrupted before it is completed, the transfer needs to restart from the beginning. In this paper, we show that independent or bounded fragmentation guarantees light-tailed file completion time as long as the file size is light-tailed, i.e., in this case, heavy-tailed file completion time can only originate from heavy-tailed file sizes. If the file size is heavy-tailed, then the file completion time is necessarily heavy-tailed. For this case, we show that when the file size distribution is regularly varying, then under independent or bounded fragmentation, the completion time tail distribution function is asymptotically upper bounded by that of the original file size stretched by a constant factor. We then prove that if the failure distribution has non-decreasing failure rate, the expected completion time is minimized by dividing the file into equal sized fragments; this optimal fragment size is unique but depends on the file size. We also present a simple blind fragmentation policy where the fragment sizes are constant and independent of the file size and prove that it is asymptotically optimal. Finally, we bound the error in expected completion time due to error in modeling of the failure process.

Funding

Efficient and Fair Traffic Control for a Multi-Service Internet

Australian Research Council

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PDF (Published version)

ISBN

9781424458363

Journal title

IEEE Conference on Computer Communications (INFOCOM 2010), San Diego, California, United States, 15-19 March 2010

Conference name

IEEE Conference on Computer Communications INFOCOM 2010, San Diego, California, United States, 15-19 March 2010

Publisher

IEEE

Copyright statement

Copyright © 2010 IEEE. The published version is reproduced in accordance with the copyright policy of the publisher. Personal use of this material is permitted. However, permission to reprint/republish this material for advertising or promotional purposes or for creating new collective works for resale or redistribution to servers or lists, or to reuse any copyrighted component of this work in other works must be obtained from the IEEE.

Language

eng

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