Discrete Memoryless Interference and Broadcast Channels with Confidential Messages: Secrecy Rate Regions
arXiv:cs/0702099 · doi:10.1109/TIT.2008.921879
Abstract
We study information-theoretic security for discrete memoryless interference and broadcast channels with independent confidential messages sent to two receivers. Confidential messages are transmitted to their respective receivers with information-theoretic secrecy. That is, each receiver is kept in total ignorance with respect to the message intended for the other receiver. The secrecy level is measured by the equivocation rate at the eavesdropping receiver. In this paper, we present inner and outer bounds on secrecy capacity regions for these two communication systems. The derived outer bounds have an identical mutual information expression that applies to both channel models. The difference is in the input distributions over which the expression is optimized. The inner bound rate regions are achieved by random binning techniques. For the broadcast channel, a double-binning coding scheme allows for both joint encoding and preserving of confidentiality. Furthermore, we show that, for a special case of the interference channel, referred to as the switch channel, the two bound bounds meet. Finally, we describe several transmission schemes for Gaussian interference channels and derive their achievable rate regions while ensuring mutual information-theoretic secrecy. An encoding scheme in which transmitters dedicate some of their power to create artificial noise is proposed and shown to outperform both time-sharing and simple multiplexed transmission of the confidential messages.
to appear Special Issue of IEEE Transactions on Information Theory on Information Theoretic Security
References in corpus (5)
Cited by in corpus (91)
- Principles of Physical Layer Security in Multiuser Wireless Networks: A Survey
- Cooperation with an Untrusted Relay: A Secrecy Perspective
- Towards the Secrecy Capacity of the Gaussian MIMO Wire-tap Channel: The 2-2-1 Channel
- Interference-Assisted Secret Communication
- Interference Assisted Secret Communication
- Interference Alignment for Secrecy
- The Wiretap Channel with Feedback: Encryption over the Channel
- Secrecy Transmit Beamforming for Heterogeneous Networks
- On the Throughput of Secure Hybrid-ARQ Protocols for Gaussian Block-Fading Channels
- Secure Degrees of Freedom of One-hop Wireless Networks
- Capacity Bounds for Broadcast Channels with Confidential Messages
- New Results on Multiple-Input Multiple-Output Broadcast Channels with Confidential Messages
- On Secrecy Rate Analysis of MIMO Wiretap Channels Driven by Finite-Alphabet Input
- Providing Secrecy With Structured Codes: Tools and Applications to Two-User Gaussian Channels
- Secure Lossless Compression with Side Information
- Full Rank Solutions for the MIMO Gaussian Wiretap Channel with an Average Power Constraint
- Cooperative Secret Communication with Artificial Noise in Symmetric Interference Channel
- MIMO Wiretap Channels with Arbitrarily Varying Eavesdropper Channel States
- On the Secure Degrees of Freedom in the K-User Gaussian Interference Channel
- Multiaccess Channel with Partially Cooperating Encoders and Security Constraints
- K-user Interference Channels: Achievable Secrecy Rate and Degrees of Freedom
- Secure Broadcasting Using Independent Secret Keys
- Secure Degrees of Freedom of One-hop Wireless Networks with No Eavesdropper CSIT
- Secure Degrees of Freedom of Wireless X Networks Using Artificial Noise Alignment
- Physical Layer Security in the Presence of Interference
- Joint Power Control in Wiretap Interference Channels
- Linear Precoding for Broadcast Channels with Confidential Messages under Transmit-Side Channel Correlation
- Secrecy Capacity Region of Some Classes of Wiretap Broadcast Channels
- Secure Degrees of Freedom for Gaussian Channels with Interference: Structured Codes Outperform Gaussian Signaling
- Secure Degrees of Freedom Regions of Multiple Access and Interference Channels: The Polytope Structure
- Multiple Antenna Secure Broadcast over Wireless Networks
- The Secrecy Capacity Region of the Gaussian MIMO Multi-receiver Wiretap Channel
- Multiple-Access Relay Wiretap Channel
- MIMO Wiretap Channel under Receiver Side Power Constraints with Applications to Wireless Power Transfer and Cognitive Radio
- Multiple-Input Multiple-Output Gaussian Broadcast Channels with Confidential Messages
- Secrecy Capacity Region of a Multi-Antenna Gaussian Broadcast Channel with Confidential Messages
- Multi-Antenna Gaussian Broadcast Channels with Confidential Messages
- Multi-Phase Smart Relaying and Cooperative Jamming in Secure Cognitive Radio Networks
- Capacity Results for Relay Channels with Confidential Messages
- Secrecy Sum-Rates with Regularized Channel Inversion Precoding under Imperfect CSI at the Transmitter
- Secure Degrees of Freedom of the Gaussian Wiretap Channel with Helpers and No Eavesdropper CSI: Blind Cooperative Jamming
- Improvement of the Han-Kobayashi Rate Region for General Interference Channel-v2
- Secrecy in the 2-User Symmetric Deterministic Interference Channel with Transmitter Cooperation
- Secrecy in Cooperative Relay Broadcast Channels
- Adding Common Randomness Can Remove the Secrecy Constraints in Communication Networks
- Secure Retrospective Interference Alignment
- Air Dominance in Sensor Networks: Guarding Sensor Motes using Selective Interference
- Secure Broadcasting With Side-Information
- Two Classes of Broadcast Channels With Side-Information: Capacity Outer Bounds
- Adding a Helper Can Totally Remove the Secrecy Constraints in Interference Channel
- Secrecy Capacity of a Class of Broadcast Channels with an Eavesdropper
- On the Optimality of Linear Precoding for Secrecy in the MIMO Broadcast Channel
- On the Secrecy Rate Region for the Interference Channel
- Strong Secrecy and Reliable Byzantine Detection in the Presence of an Untrusted Relay
- On the Secrecy Capacity Region of the 2-user Z Interference Channel with Unidirectional Transmitter Cooperation
- On the Relationship Between the Multi-antenna Secrecy Communications and Cognitive Radio Communications
- Outer Bounds on the Secrecy Capacity Region of the 2-user Z Interference Channel With Unidirectional Transmitter Cooperation
- On the Optimality of Secure Communication Without Using Cooperative Jamming
- Broadcast Channels with Privacy Leakage Constraints
- Secured Communication over Frequency-Selective Fading Channels: a practical Vandermonde precoding
- Secure Degrees of Freedom of Multi-user Networks: One-Time-Pads in the Air via Alignment
- On the Secrecy Capacity of 2-user Gaussian Z-Interference Channel with Shared Key
- Optimal Secure GDoF of Symmetric Gaussian Wiretap Channel with a Helper
- Finite State Markov Wiretap Channel with Delayed Feedback
- Feedback Coding Schemes for the Broadcast Channel with Mutual Secrecy Requirement
- Interference Channels with Strong Secrecy
- Cognitive Radio Networks: An Information Theoretic Perspective
- Relay Broadcast Channel with Confidential Messages
- Achieving both positive secrecy rates of the users in two-way wiretap channel by individual secrecy
- Network Simplification for Secure AF Relaying
- The Secrecy Capacity of Gaussian MIMO Channels with Finite Memory - Full Version
- Capacity Bounds for State-Dependent Broadcast Channels
- Individual secrecy for broadcast channels with receiver side information
- Information-Theoretical Security for Several Models of Multiple-Access Channel
- Cooperative encoding for secrecy in interference channels
- Low-SNR Analysis of Interference Channels under Secrecy Constraints
- Secure Communication over Interference Channel: To Jam or Not to Jam?
- Successive Secret Key Agreement over Generalized Multiple Access and Broadcast Channels
- Secure Wireless Communication and Optimal Power Control under Statistical Queueing Constraints
- Diversity-Multiplexing Tradeoff for the Multiple-Antenna Wire-tap Channel
- Secrecy Rate Region of SWIPT Wiretap Interference Channels
- How to Achieve Privacy in Bidirectional Relay Networks
- Multi-receiver Wiretap Channel with Public and Confidential Messages
- On The Fast Fading Multiple-Antenna Gaussian Broadcast Channel with Confidential Messages and Partial CSIT
- The Secrecy Capacity for a 3-Receiver Broadcast Channel with Degraded Message Sets
- Two-hop Secure Communication Using an Untrusted Relay
- Dispensing with Noise Forward in the "Weak" Relay-Eavesdropper Channel
- On the Secrecy Rate Region of a Fading Multiple-Antenna Gaussian Broadcast Channel with Confidential Messages and Partial CSIT
- Achievable Secrecy Rate for the Relay Eavesdropper Channel with Non-Causal State Available at Transmitter and Relay
- The Gaussian Many-to-1 Interference Channel with Confidential Messages
- Joint Design of Optimal Cooperative Jamming and Power Allocation for Linear Precoding