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Secure On-Off Transmission Design With Channel Estimation Errors

机译:具有信道估计误差的安全通断传输设计

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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 are often based on the ideal assumption of perfect channel knowledge or the capability of variable-rate transmissions. In this paper, 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 eavesdropper's channel. In particular, our design covers the interesting case where the eavesdropper also uses the pilots sent from the transmitter to obtain imperfect channel estimation. An interesting observation is that using too much pilot power can harm the throughput of secure transmission if both the legitimate receiver and the eavesdropper have channel estimation errors, while the secure transmission always benefits from increasing pilot power when only the legitimate receiver has channel estimation errors but not the eavesdropper. When the encoding rates are controllable parameters to design, we further derive both a non-adaptive and an adaptive rate transmission schemes by jointly optimizing the encoding rates and the on-off transmission thresholds to maximize the throughput of secure transmissions.
机译:物理层安全性最近已被视为补充和改进未来无线网络中通信安全性的新兴技术。当前在物理层安全性方面的研究和开发通常基于完美的信道知识或可变速率传输能力的理想假设。在本文中,我们通过考虑接收机的信道估计误差并研究固定速率和可变速率传输,来研究更实际情况下的安全传输设计。假设准静态衰落信道,我们设计了安全的开-关传输方案,以在受到保密中断概率约束的情况下最大化吞吐量。对于具有给定和固定编码率的系统,我们说明了最佳的开-关传输阈值和可达到的吞吐量如何随窃听者通道上的知识量而变化。特别是,我们的设计涵盖了有趣的情况,即窃听者还使用从发射机发送的导频来获得不完美的信道估计。一个有趣的观察结果是,如果合法接收机和窃听者均具有信道估计错误,则使用过多的导频功率会损害安全传输的吞吐量,而当仅合法接收机具有信道估计错误但安全传输总是受益于导频功率的增加。不是窃听者。当编码速率是可控制的设计参数时,我们通过联合优化编码速率和开关阈值以最大化安全传输的吞吐量,进一步推导了非自适应和自适应速率传输方案。

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