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Efficient dynamic provable possession of remote data via balanced update trees

  • University of Notre Dame

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

49 Scopus citations

Abstract

The emergence and availability of remote storage providers prompted work in the security community that allows a client to verify integrity and availability of the data she outsourced to an untrusted remove storage server at a relatively low cost. Most recent solutions to this problem allow the client to read and update (insert, modify, or delete) stored data blocks while trying to lower the overhead associated with verifying data integrity. In this work we develop a novel and efficient scheme, computation and communication overhead of which is orders of magnitude lower than those of other state-of-the-art schemes. Our solution has a number of new features such as a natural support for operations on ranges of blocks, and revision control. The performance guarantees that we achieve stem from a novel data structure, termed balanced update tree, and removing the need to verify update operations.

Original languageEnglish
Title of host publicationASIA CCS 2013 - Proceedings of the 8th ACM SIGSAC Symposium on Information, Computer and Communications Security
Pages183-194
Number of pages12
DOIs
StatePublished - 2013
Event8th ACM SIGSAC Symposium on Information, Computer and Communications Security, ASIA CCS 2013 - Hangzhou, China
Duration: May 8 2013May 10 2013

Publication series

NameASIA CCS 2013 - Proceedings of the 8th ACM SIGSAC Symposium on Information, Computer and Communications Security

Conference

Conference8th ACM SIGSAC Symposium on Information, Computer and Communications Security, ASIA CCS 2013
Country/TerritoryChina
CityHangzhou
Period05/8/1305/10/13

Keywords

  • authentication
  • balanced update tree
  • dynamic provable data possession
  • outsourced storage
  • proof of retrievability

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