DocumentCode
82738
Title
SeDas: A Self-Destructing Data System Based on Active Storage Framework
Author
Lingfang Zeng ; Shibin Chen ; Qingsong Wei ; Dan Feng
Author_Institution
Wuhan Nat. Lab. for Optoelectron., Huazhong Univ. of Sci. & Technol., Wuhan, China
Volume
49
Issue
6
fYear
2013
fDate
Jun-13
Firstpage
2548
Lastpage
2554
Abstract
Personal data stored in the Cloud may contain account numbers, passwords, notes, and other important information that could be used and misused by a miscreant, a competitor, or a court of law. These data are cached, copied, and archived by Cloud Service Providers (CSPs), often without users´ authorization and control. Self-destructing data mainly aims at protecting the user data´s privacy. All the data and their copies become destructed or unreadable after a user-specified time, without any user intervention. In addition, the decryption key is destructed after the user-specified time. In this paper, we present SeDas, a system that meets this challenge through a novel integration of cryptographic techniques with active storage techniques based on T10 OSD standard. We implemented a proof-of-concept SeDas prototype. Through functionality and security properties evaluations of the SeDas prototype, the results demonstrate that SeDas is practical to use and meets all the privacy-preserving goals described. Compared to the system without self-destructing data mechanism, throughput for uploading and downloading with the proposed SeDas acceptably decreases by less than 72%, while latency for upload/download operations with self-destructing data mechanism increases by less than 60%.
Keywords
cloud computing; cryptography; data privacy; Cloud Service Providers; T10 OSD standard; active storage framework; active storage techniques; cryptographic technique integration; decryption key; download operation; functionality property evaluation; personal data; proof-of-concept SeDas prototype; security property evaluation; self-destructing data mechanism; self-destructing data system; upload operation; user data privacy; user-specified time; Active storage; Cloud computing; data privacy; self-destructing data;
fLanguage
English
Journal_Title
Magnetics, IEEE Transactions on
Publisher
ieee
ISSN
0018-9464
Type
jour
DOI
10.1109/TMAG.2013.2248138
Filename
6522217
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