Capacity Bounds for Broadcast Channels with Confidential Messages
arXiv:0805.4374 · doi:10.1109/TIT.2009.2027500
Abstract
In this paper, we study capacity bounds for discrete memoryless broadcast channels with confidential messages. Two private messages as well as a common message are transmitted; the common message is to be decoded by both receivers, while each private message is only for its intended receiver. In addition, each private message is to be kept secret from the unintended receiver where secrecy is measured by equivocation. We propose both inner and outer bounds to the rate equivocation region for broadcast channels with confidential messages. The proposed inner bound generalizes Csiszár and Körner's rate equivocation region for broadcast channels with a single confidential message, Liu {\em et al}'s achievable rate region for broadcast channels with perfect secrecy, Marton's and Gel'fand and Pinsker's achievable rate region for general broadcast channels. Our proposed outer bounds, together with the inner bound, helps establish the rate equivocation region of several classes of discrete memoryless broadcast channels with confidential messages, including less noisy, deterministic, and semi-deterministic channels. Furthermore, specializing to the general broadcast channel by removing the confidentiality constraint, our proposed outer bounds reduce to new capacity outer bounds for the discrete memory broadcast channel.
27 pages, 1 figure, submitted to IEEE Transaction on Information Theory
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- New Results on Multiple-Input Multiple-Output Broadcast Channels with Confidential Messages
- MIMO Gaussian Broadcast Channels with Confidential and Common Messages
- The Secrecy Rate Region of the Broadcast Channel
- Secure Degrees of Freedom of Wireless X Networks Using Artificial Noise Alignment
- Secure Degrees of Freedom Regions of Multiple Access and Interference Channels: The Polytope Structure
- Multiple-Access Relay Wiretap Channel
- The Embedding Capacity of Information Flows Under Renewal Traffic
- Secrecy Rate Region of the Broadcast Channel with an Eavesdropper
- Securing Multi-User Broadcast Wiretap Channels with Finite CSI Feedback
- Parallel BCC with One Common and Two Confidential Messages and Imperfect CSIT
- Optimal Secure GDoF of Symmetric Gaussian Wiretap Channel with a Helper
- Finite State Markov Wiretap Channel with Delayed Feedback
- Secure Communication over Interference Channel: To Jam or Not to Jam?