Interference-Assisted Secret Communication
arXiv:0804.1382 · doi:10.1109/TIT.2011.2121450
Abstract
Wireless communication is susceptible to adversarial eavesdropping due to the broadcast nature of the wireless medium. In this paper it is shown how eavesdropping can be alleviated by exploiting the superposition property of the wireless medium. A wiretap channel with a helping interferer (WT-HI), in which a transmitter sends a confidential message to its intended receiver in the presence of a passive eavesdropper, and with the help of an independent interferer, is considered. The interferer, which does not know the confidential message, helps in ensuring the secrecy of the message by sending independent signals. An achievable secrecy rate for the WT-HI is given. The results show that interference can be exploited to assist secrecy in wireless communications. An important example of the Gaussian case, in which the interferer has a better channel to the intended receiver than to the eavesdropper, is considered. In this situation, the interferer can send a (random) codeword at a rate that ensures that it can be decoded and subtracted from the received signal by the intended receiver but cannot be decoded by the eavesdropper. Hence, only the eavesdropper is interfered with and the secrecy level of the confidential message is increased.
To appear in the Proceedings of the 2008 IEEE Information Theory Workshop, Porto, Portugal, May 5 - 9, 2008
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Cited by in corpus (28)
- Robust Beamforming for Security in MIMO Wiretap Channels with Imperfect CSI
- Multiaccess Channel with Partially Cooperating Encoders and Security Constraints
- The Secrecy Rate Region of the Broadcast Channel
- A Secure Communication Game with a Relay Helping the Eavesdropper
- 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
- Joint Power Control in Wiretap Interference Channels
- Multiple-Access Relay Wiretap Channel
- Generalized Interference Alignment --- Part II: Application to Wireless Secrecy
- Secrecy Rate Region of the Broadcast Channel with an Eavesdropper
- Multi-Phase Smart Relaying and Cooperative Jamming in Secure Cognitive Radio Networks
- On the Application of Noisy Network Coding to the Relay-Eavesdropper Channel
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- A Broadcast Approach To Secret Key Generation Over Slow Fading Channels
- Air Dominance in Sensor Networks: Guarding Sensor Motes using Selective Interference
- On the Secrecy Capacity Region of the 2-user Z Interference Channel with Unidirectional Transmitter Cooperation
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- Finite State Markov Wiretap Channel with Delayed Feedback
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- Optimal Secure GDoF of Symmetric Gaussian Wiretap Channel with a Helper
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- Perfect Secrecy in Physical Layer Network Coding Systems from Structured Interference
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- Control of Wireless Networks with Secrecy
- Jammer-Assisted Resource Allocation in Secure OFDMA With Untrusted Users