Presentation 2013-07-18
An Approach to Amplitude Scaling Partial Encryption for Compressed Audio
Twe Ta Oo, Takao ONOYE, Kilho SHIN,
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Abstract(in Japanese) (See Japanese page)
Abstract(in English) The widespread proliferation of multimedia compression standards and Internet technologies increasingly demands to provide ease of distribution together with content protection. To provide content security, a variety of encryption technologies have already been developed. However, direct encryption on compressed audio like MPEG audio leads to uncontrollable distortion. Amplitudes of encrypted audio contents are out-of acceptable audio ranges and Huffman decoding of those results creates synchronization problems. In this system, low-complexity partial encryption scheme for MPEG audio is presented. The aim is to provide listeners with sample-quality audio that can be upgraded to full-quality by simply acquiring a key and then decrypting parts of the already available data. Sample-quality can be obtained by scaling amplitude ranges of the encrypted result. Resulting scaled audio can be successfully decoded by any MPEG standard decoder. In this system, AES algorithm is used for encryption and percentage of encryption can be adjusted depending on the security requirement of the underlying application.
Keyword(in Japanese) (See Japanese page)
Keyword(in English) MPEG / Huffman / synchronization / AES
Paper # ISEC2013-33,SITE2013-28,ICSS2013-38,EMM2013-35
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Conference Information
Committee SITE
Conference Date 2013/7/11(1days)
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Paper Information
Registration To Social Implications of Technology and Information Ethics (SITE)
Language ENG
Title (in Japanese) (See Japanese page)
Sub Title (in Japanese) (See Japanese page)
Title (in English) An Approach to Amplitude Scaling Partial Encryption for Compressed Audio
Sub Title (in English)
Keyword(1) MPEG
Keyword(2) Huffman
Keyword(3) synchronization
Keyword(4) AES
1st Author's Name Twe Ta Oo
1st Author's Affiliation Dept. Information Systems Engineering, Graduate School of Information Science and Technology, Osaka University()
2nd Author's Name Takao ONOYE
2nd Author's Affiliation Dept. Information Systems Engineering, Graduate School of Information Science and Technology, Osaka University
3rd Author's Name Kilho SHIN
3rd Author's Affiliation Graduate School of Applied Informatics, University of Hyogo
Date 2013-07-18
Paper # ISEC2013-33,SITE2013-28,ICSS2013-38,EMM2013-35
Volume (vol) vol.113
Number (no) 136
Page pp.pp.-
#Pages 6
Date of Issue