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Characterization of the rate-equivocation region of a general wiretap channel involves two auxiliary random variables: U, for rate splitting and V, for channel prefixing.
The wire-tap channel
A. Wyner · 1975
Earlier work this paper cites.
Source coding with side information and a converse for degraded broadcast channels
R. Ahlswede and J. Körner · 1975
Earlier work this paper cites.
On a special class of wiretap channels
S. K. Leung-Yan-Cheung · 1977
Earlier work this paper cites.
Broadcast channels with confidential messages
I. Csiszár and J. Körner · 1978
Earlier work this paper cites.
Cardinality bounds on auxiliary variables in multiple user theory via the method of Ahlswede and Körner
M. Salehi · 1978
Earlier work this paper cites.
Almost independence and secrecy capacity
I. Csiszár · 1996
Cited alongside, same era.
On a special class of broadcast channels with confidential messages
M. van Dijk · 1997
Cited alongside, same era.
Information-theoretic key agreement: from weak to strong secrecy for free
U. M. Maurer and S. Wolf · 2000
Cited alongside, same era.
Noise prediction for channels with side information at the transmitter
U. Erez and R. Zamir · 2000
Cited alongside, same era.
Lecture notes on network information theory
A. El Gamal and Y.-H. Kim
Cited in the paper.
Computational Geometry: Algorithms and Applications
M. van Berg, O. Cheong, M. van Kreveld, and M. Overmars · 2008
Later among the works it cites.
A mutual information invariance approach to symmetry in discrete memoryless channels
B. Xie and R. Wesel · 2008
Later among the works it cites.
Capacity regions of two new classes of two-receiver broadcast channels
C. Nair · 2010
Later among the works it cites.
Wiretap channels: Roles of rate splitting and channel prefixing
O. Ozel and S. Ulukus · 2011
Closest in time.
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