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Design and Implementation of a Reliable and Secure Multi-receiver Stream Delivery System
http://hdl.handle.net/20.500.12678/0000007933
http://hdl.handle.net/20.500.12678/0000007933afd59116-f8b0-45ae-a7fa-5b7969bfbed1
5063ddc1-467c-4a0a-baf6-1fd0813b4d9f
Name / File | License | Actions |
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Publication type | ||||||
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Conference paper | ||||||
Upload type | ||||||
Publication | ||||||
Title | ||||||
Title | Design and Implementation of a Reliable and Secure Multi-receiver Stream Delivery System | |||||
Language | en | |||||
Publication date | 2017-11-18 | |||||
Authors | ||||||
Ei Khaing Win | ||||||
Tomoki Yoshihisa | ||||||
Yoshimasa Ishi | ||||||
Tomoya Kawakami | ||||||
Yuuichi Teranishi | ||||||
Shinji Shimojo | ||||||
Description | ||||||
"In this paper, we propose a novel reliable and secure multi-receiver stream delivery system. Our proposal system applies a reliable multicast stream delivery scheme called SRSM (Synchronized Recovery Stream Merging), which efficiently resends streams for loss-encountered receivers to achieve reliable data analysis. For secure data delivery in dynamic environment, we applied a certificate-less multi-receiver encryption scheme called CLAME (Certificate-Less Authenticated Multi-receiver Encryption). To alleviate the CPU overloads caused by shared secret key renewal when there are access right policy changes, we also propose an extension of SRSM called SRSM-R (Synchronized Recovery Stream Merging with Receiver number limitations). We evaluated the performance using a prototype implementation on Android device. We confirmed that the shared secret key renewal time can be reduced by 50% if the sender can accept extra 2.8 streams on average for threshold value 50. " |
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Conference papers | ||||||
IPSJ-DPS-172 | ||||||
Nov. 29, 2017 | ||||||
Information Processing Society of Japan, Special Interest Groups | ||||||
Shimonoseki, Japan | ||||||
http://www.ipsj.or.jp/kenkyukai/event/dps172spt26eip78.html |