DocumentCode :
1707888
Title :
Hiding Media Data via Shaders: Enabling Private Sharing in the Clouds
Author :
Kaikai Liu ; Min Li ; Xiaolin Li
Author_Institution :
Univ. of Florida, Gainesville, FL, USA
fYear :
2015
Firstpage :
122
Lastpage :
129
Abstract :
In the era of Cloud and Social Networks, mobile devices exhibit much more powerful abilities for big media data storage and sharing. However, many users are still reluctant to share/store their data via clouds due to the potential leakage of confidential or private information. Although some cloud services provide storage encryption and access protection, privacy risks are still high since the protection is not always adequately conducted from end-to-end. Most customers are aware of the danger of letting data control out of their hands, e.g., Storing them to YouTube, Flickr, Facebook, Google+. Because of substantial practical and business needs, existing cloud services are restricted to the desired formats, e.g., Video and photo, without allowing arbitrary encrypted data. In this paper, we propose a format-compliant end-to-end privacy-preserving scheme for media sharing/storage issues with considerations for big data, clouds, and mobility. To realize efficient encryption for big media data, we jointly achieve format-compliant, compression-independent and correlation-preserving via multi-channel chained solutions under the guideline of Markov cipher. The encryption and decryption process is integrated into an image/video filter via GPU Shader for display-to-display full encryption. The proposed scheme makes big media data sharing/storage safer and easier in the clouds.
Keywords :
Big Data; cloud computing; cryptography; data encapsulation; data privacy; social networking (online); GPU Shader; Markov cipher; big media data storage; cloud networks; cloud services; format-compliant end-to-end privacy-preserving scheme; image filter; media data hiding; multi-channel chained solutions; private sharing; social networks; video filter; Data privacy; Encryption; Image coding; Media; Privacy; Chaotic Mapping; Cloud; Encryption; Format-Compliant; Media Data; Privacy;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Cloud Computing (CLOUD), 2015 IEEE 8th International Conference on
Conference_Location :
New York City, NY
Print_ISBN :
978-1-4673-7286-2
Type :
conf
DOI :
10.1109/CLOUD.2015.26
Filename :
7214036
Link To Document :
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