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ABSTRACT
The distribution of keys in a computer network using single key or public key encryption is discussed. We consider the possibility that communication keys may be compromised, and show that key distribution protocols with timestamps prevent replays of compromised keys. The timestamps have the additional benefit of replacing a two-step handshake.
REFERENCES
Note: OCR errors may be found in this Reference List extracted from the full text article. ACM has opted to expose the complete List rather than only correct and linked references.
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CITED BY 65
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Jang Ho Lee , Atul Prakash , Trent Jaeger , Gwobaw Wu, Supporting multi-user, multi-applet workspaces in CBE, Proceedings of the 1996 ACM conference on Computer supported cooperative work, p.344-353, November 16-20, 1996, Boston, Massachusetts, United States
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Ray Bird , Inder Gopal , Amir Herzberg , Phil Janson , Shay Kutten , Refik Molva , Moti Yung, The KryptoKnight family of light-weight protocols for authentication and key distribution, IEEE/ACM Transactions on Networking (TON), v.3 n.1, p.31-41, Feb. 1995
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Randall J. Atkinson , Daniel L. McDonald , Bao G. Phan , Craig W. Metz , Kenneth C. Chin, Implementation of IPv6 in 4.4 BSD, Proceedings of the Annual Technical Conference on USENIX 1996 Annual Technical Conference, p.10-10, January 22-26, 1996, San Diego, CA
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Robert Dawson , Colin Boyd , Ed Dawson , Juan Manuel González Nieto, SKMA: a key management architecture for SCADA systems, Proceedings of the 2006 Australasian workshops on Grid computing and e-research, p.183-192, January 16-19, 2006, Hobart, Tasmania, Australia
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