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首页> 外文期刊>Eurasip Journal on Wireless Communications and Networking >Resource allocation for secure Gaussian parallel relay channels with finite-length coding and discrete constellations
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Resource allocation for secure Gaussian parallel relay channels with finite-length coding and discrete constellations

机译:具有有限长度编码和离散星座的安全高斯并行继电器通道的资源分配

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Abstract We investigate the transmission of a secret message from Alice to Bob in the presence of an eavesdropper (Eve) and many of decode-and-forward relay nodes. Each link comprises a set of parallel channels, modeling for example an orthogonal frequency division multiplexing transmission. We consider the impact of efficient implementations, including discrete constellations and finite-length coding, defining an achievable secrecy rate under a constraint on the equivocation rate at Eve. Then, we propose a power and channel allocation algorithm that maximizes the achievable secrecy rate by resorting to two coupled Gale-Shapley algorithms for stable matching problem. We consider the scenarios of both full and partial channel state information at Alice. In the latter case, we only guarantee an outage secrecy rate, i.e., the rate of a message that remains secret with a given probability. Numerical results are provided for Rayleigh fading channels in terms of average outage secrecy rate, showing that practical schemes achieve a performance quite close to that of ideal ones.
机译:摘要我们在存在窃听者(夏娃)和许多解码和前进的中继节点中,我们调查从爱丽丝到鲍勃的秘密消息的传输。每个链路包括一组并行通道,例如正交频分复用传输。我们考虑有效实施的影响,包括离散星座和有限长度编码,在夏娃的常见率率的约束下定义可实现的保密率。然后,我们提出了一种动力和信道分配算法,通过求助于两个耦合的大血管血管算法来最大化可实现的秘密率,以稳定匹配问题。我们考虑Alice的全部和部分频道状态信息的场景。在后一种情况下,我们只能保证中断秘密率,即留下具有给定概率的秘密的速度。在平均中断保密率方面为瑞利衰落通道提供了数值结果,表明实用方案达到了靠近理想的方案。

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