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Cooperative jamming for physical layer security in hybrid satellite terrestrial relay networks

机译:混合卫星地面中继网络中的物理层安全性合作卡

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摘要

To integrate the satellite communications with the LTE/5G services, the concept of Hybrid Satellite Terrestrial Relay Networks (HSTRNs) has been proposed. In this paper, we investigate the secure transmission in a HSTRN where the eavesdropper can wiretap the transmitted messages from both the satellite and the intermediate relays. To effectively protect the message from wiretapping in these two phases, we consider cooperative jamming by the relays, where the jamming signals are optimized to maximize the secrecy rate under the total power constraint of relays. In the first phase, the Maximal Ratio Transmission (MRT) scheme is used to maximize the secrecy rate, while in the second phase, by interpolating between the sub-optimal MRT scheme and the null-space projection scheme, the optimal scheme can be obtained via an efficient one-dimensional searching method. Simulation results show that when the number of cooperative relays is small, the performance of the optimal scheme significantly outperforms that of MRT and null-space projection scheme. When the number of relays increases, the performance of the null-space projection approaches that of the optimal one.
机译:为了将卫星通信与LTE / 5G服务集成,已经提出了混合卫星地面继电器网络(HSTRNS)的概念。在本文中,我们研究了HSTRN中的安全传输,其中窃听器可以从卫星和中间继电器窃取传输的消息。为了在这两个阶段中有效保护消息免受窃听的窃听,我们考虑通过继电器的协作干扰,其中干扰信号被优化以最大化在继电器的总功率约束下的保密率。在第一阶段中,最大比率传输(MRT)方案用于最大化保密率,而在第二阶段中,通过在子最优MRT方案和空空间投影方案之间插值,可以获得最佳方案通过有效的一维搜索方法。仿真结果表明,当协同继电器的数量小时,最佳方案的性能显着优于MRT和空空间投影方案的表现。当继电器的数量增加时,空空间投影的性能接近最佳的性能。

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