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We consider the secret key generation problem when sources are randomly excited by the sender and there is a noiseless public discussion channel.
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T.-H. Chou, V. Y. F. Tan, and S. C. Draper, “On the capacity of the sender-excited secret key agreement model,” in
2011
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H. Asnani, H. Permuter, and T. Weissman, “Probing Capacity,”
2011
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H. Permuter and T. Weissman, “Source coding with a side information “vending machine”,”
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2008
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A. A. Gohari and V. Anantharam, “Information-theoretic key agreement of multiple terminals – I: Source model,”
2008
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Now Publishers Inc, 2009
Y. Liang, H. V. Poor, and S. Shamai, · 2009
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A. Khisti, S. Diggavi, and G. Wornell, “Secret key agreement using asymmetry in channel state knowledge,” in
2009
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T. Weissman, “Capacity of channels with action-dependent states,”
2010
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K. Kittichokechai, T. J. Oechtering, M. Skoglund, and R. Thobaben, “Source and channel coding with action-dependent partially known two-sided state information,” in
2010
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S. Watanabe, R. Matsumoto, and T. Uyematsu, “Strongly Secure Privacy Amplification Cannot Be Obtained by Encoder of Slepian-Wolf Code,”
2010
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2011
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A. Agrawal, Z. Rezki, A. Khisti, and M. Alouini, “Noncoherent capacity of secret-key agreement with public discussion,”
2011
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M. Bloch and J. N. Laneman, “Secrecy from Resolvability,”
2011
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Y. K. Chia and A. El Gamal, “Wiretap channel with causal state information,”
2012
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T. Chou, S. C. Draper, and A. Sayeed, “Key generation using external source excitation: Capacity, reliability, and secrecy exponent,”
2012
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Cambridge University Press, 2012
A. El Gamal and Y.-H. Kim, · 2012
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