On the Secrecy Capacity of Fading Channels
Praveen Kumar Gopala, Lifeng Lai, Hesham El Gamal

TL;DR
This paper analyzes the secrecy capacity of fading channels with eavesdroppers, deriving optimal strategies under different CSI scenarios and demonstrating the positive impact of fading on secure communication.
Contribution
It characterizes secrecy capacity under various CSI assumptions, introduces a low-complexity near-optimal power allocation scheme, and highlights the benefits of fading and rate adaptation for security.
Findings
Secrecy capacity is higher with fading channels.
The on/off power scheme is asymptotically optimal at high SNR.
Fading positively influences secure communication capabilities.
Abstract
We consider the secure transmission of information over an ergodic fading channel in the presence of an eavesdropper. Our eavesdropper can be viewed as the wireless counterpart of Wyner's wiretapper. The secrecy capacity of such a system is characterized under the assumption of asymptotically long coherence intervals. We first consider the full Channel State Information (CSI) case, where the transmitter has access to the channel gains of the legitimate receiver and the eavesdropper. The secrecy capacity under this full CSI assumption serves as an upper bound for the secrecy capacity when only the CSI of the legitimate receiver is known at the transmitter, which is characterized next. In each scenario, the perfect secrecy capacity is obtained along with the optimal power and rate allocation strategies. We then propose a low-complexity on/off power allocation strategy that achieves…
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Taxonomy
TopicsWireless Communication Security Techniques · Chaos-based Image/Signal Encryption · Cooperative Communication and Network Coding
