A Speed-Adaptive Media Encryption Scheme for Real-Time Recording and Playback System

<p/> <p>The recording and playback system (RPS) in video conference system needs to store mass of media data real-timely. Considering the security issue, media data should be encrypted before storing. Traditional full encryption and partial encryption algorithms are not applicable to RPS...

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Main Authors: Lian Shiguo, Wang Lifeng, Xiao Chen, Ma Shilong, Lv Weifeng, Xu Ke
Format: Article
Language:English
Published: SpringerOpen 2010-01-01
Series:EURASIP Journal on Wireless Communications and Networking
Online Access:http://jwcn.eurasipjournals.com/content/2010/371513
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spelling doaj-fb282e11725b4116baae086b1d49ead12020-11-24T22:01:02ZengSpringerOpenEURASIP Journal on Wireless Communications and Networking1687-14721687-14992010-01-0120101371513A Speed-Adaptive Media Encryption Scheme for Real-Time Recording and Playback SystemLian ShiguoWang LifengXiao ChenMa ShilongLv WeifengXu Ke<p/> <p>The recording and playback system (RPS) in video conference system needs to store mass of media data real-timely. Considering the security issue, media data should be encrypted before storing. Traditional full encryption and partial encryption algorithms are not applicable to RPS because they could not adjust their speed to meet the throughput variation of media data in real-time RPS. In this paper, a novel lightweight speed-adaptive media-data encryption (SAME) scheme is proposed firstly. Secondly, the SAME is improved to a packet-based algorithm according to the implementation of data storage in RPS system. Thirdly, an RPS oriented queue theory-based autoadaptive speed control mechanism for SAME is designed. Finally, these schemes are integrated into the practical system, that is, AdmireRPS, an RPS of a heterogeneous wireless network-(HWN-) oriented video conference system. Theoretical analysis and experimental results show the SAME is effective enough to support real-time applications. In addition, the proposed schemes also can be used in video surveillance and other video recording systems.</p>http://jwcn.eurasipjournals.com/content/2010/371513
collection DOAJ
language English
format Article
sources DOAJ
author Lian Shiguo
Wang Lifeng
Xiao Chen
Ma Shilong
Lv Weifeng
Xu Ke
spellingShingle Lian Shiguo
Wang Lifeng
Xiao Chen
Ma Shilong
Lv Weifeng
Xu Ke
A Speed-Adaptive Media Encryption Scheme for Real-Time Recording and Playback System
EURASIP Journal on Wireless Communications and Networking
author_facet Lian Shiguo
Wang Lifeng
Xiao Chen
Ma Shilong
Lv Weifeng
Xu Ke
author_sort Lian Shiguo
title A Speed-Adaptive Media Encryption Scheme for Real-Time Recording and Playback System
title_short A Speed-Adaptive Media Encryption Scheme for Real-Time Recording and Playback System
title_full A Speed-Adaptive Media Encryption Scheme for Real-Time Recording and Playback System
title_fullStr A Speed-Adaptive Media Encryption Scheme for Real-Time Recording and Playback System
title_full_unstemmed A Speed-Adaptive Media Encryption Scheme for Real-Time Recording and Playback System
title_sort speed-adaptive media encryption scheme for real-time recording and playback system
publisher SpringerOpen
series EURASIP Journal on Wireless Communications and Networking
issn 1687-1472
1687-1499
publishDate 2010-01-01
description <p/> <p>The recording and playback system (RPS) in video conference system needs to store mass of media data real-timely. Considering the security issue, media data should be encrypted before storing. Traditional full encryption and partial encryption algorithms are not applicable to RPS because they could not adjust their speed to meet the throughput variation of media data in real-time RPS. In this paper, a novel lightweight speed-adaptive media-data encryption (SAME) scheme is proposed firstly. Secondly, the SAME is improved to a packet-based algorithm according to the implementation of data storage in RPS system. Thirdly, an RPS oriented queue theory-based autoadaptive speed control mechanism for SAME is designed. Finally, these schemes are integrated into the practical system, that is, AdmireRPS, an RPS of a heterogeneous wireless network-(HWN-) oriented video conference system. Theoretical analysis and experimental results show the SAME is effective enough to support real-time applications. In addition, the proposed schemes also can be used in video surveillance and other video recording systems.</p>
url http://jwcn.eurasipjournals.com/content/2010/371513
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