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On the Continuity of the Secrecy Capacity of Compound and Arbitrarily Varying Wiretap Channels.

, , and . IEEE Trans. Information Forensics and Security, 10 (12): 2531-2546 (2015)

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On MMSE properties of codes for the Gaussian broadcast channel with confidential messages., , , and . ICC Workshops, page 441-446. IEEE, (2015)Optimal transceiver design for wiretap channels with side information., and . ICASSP, page 2891-2895. IEEE, (2013)Secret-Key capacity of compound source models with one-way public communication., , and . ITW Fall, page 252-256. IEEE, (2015)Capacity region continuity of the compound broadcast channel with confidential messages., , , and . ITW, page 1-5. IEEE, (2015)On the SNR-Evolution of the MMSE Function of Codes for the Gaussian Broadcast and Wiretap Channels., , , and . IEEE Trans. Information Theory, 62 (4): 2070-2091 (2016)On the Continuity of the Secrecy Capacity of Compound and Arbitrarily Varying Wiretap Channels., , and . IEEE Trans. Information Forensics and Security, 10 (12): 2531-2546 (2015)List Decoding for Arbitrarily Varying Broadcast Channels With Receiver Side Information., and . IEEE Trans. Information Theory, 60 (8): 4472-4487 (2014)On the Individual Secrecy Capacity Regions of the General, Degraded, and Gaussian Multi-Receiver Wiretap Broadcast Channel., , and . IEEE Trans. Information Forensics and Security, 11 (9): 2107-2122 (2016)Wiretap Channels: Nonasymptotic Fundamental Limits., , and . IEEE Trans. Information Theory, 65 (7): 4069-4093 (2019)Full-Duplex Relaying with Improper Gaussian Signaling over Nakagami-m Fading Channels., , , , and . CoRR, (2017)