Secure On-Off Transmission Design with Channel Estimation Errors
Biao He, Xiangyun Zhou

TL;DR
This paper investigates secure wireless transmission schemes considering practical channel estimation errors, optimizing on-off and rate adaptation strategies to maximize throughput while maintaining secrecy under realistic conditions.
Contribution
It introduces secure on-off transmission schemes that account for channel estimation errors at both legitimate and eavesdropper channels, including adaptive rate optimization.
Findings
Optimal thresholds depend on eavesdropper channel knowledge.
Excessive pilot power can reduce throughput when both channels have errors.
Adaptive rate schemes outperform fixed-rate schemes in throughput.
Abstract
Physical layer security has recently been regarded as an emerging technique to complement and improve the communication security in future wireless networks. The current research and development in physical layer security is often based on the ideal assumption of perfect channel knowledge or the capability of variable-rate transmissions. In this work, we study the secure transmission design in more practical scenarios by considering channel estimation errors at the receiver and investigating both fixed-rate and variable-rate transmissions. Assuming quasi-static fading channels, we design secure on-off transmission schemes to maximize the throughput subject to a constraint on secrecy outage probability. For systems with given and fixed encoding rates, we show how the optimal on-off transmission thresholds and the achievable throughput vary with the amount of knowledge on the…
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Taxonomy
TopicsWireless Communication Security Techniques · Cooperative Communication and Network Coding · Advanced MIMO Systems Optimization
