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Robust Secure Beamforming for the Downlink of Multibeam Satellite Communications

机译:用于多次卫星通信的下行链路的强大安全波束成形

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This paper investigates the physical layer security (PLS) of a multibeam satellite communication system where the satellite transmits the private signal to a legitimate user (LU) which is intercepted by multiple eavesdroppers (Eves). By considering the imperfect channel state information (CSI) of Eve channels, we formulate the constrained problem to maximize the LU achievable secrecy rate (ASR) subject to secrecy rate outage probability constraint, the total satellite transmit power constraint and the LU rate constraint. Firstly, we adopt golden section method to transform the difficult original problem into a series easier sub-problem. Then, considering the nonconvex of sub-problem, we employ Bernstein inequality and semidefinite programming (SDP) to transform the sub-problem into solvable one. Then, we use standard software package to get the optimal beamforming (BF) weight vector through an iterative penalty-based algorithm. Finally, simulation results confirm the superiority and robustness of the designed BF scheme.
机译:本文研究,其中卫星发射该专用信号,该信号是由多个窃听者(前夕)截获一个合法用户(LU)的多波束卫星通信系统的物理层安全(PLS)。通过考虑EVE通道的不完美信道状态信息(CSI),我们制定受约束的问题,以最大限度地提高由保密速率中断概率约束的LU可实现的保密率(ASR),总卫星传输功率约束和LU速率约束。首先,我们采用Golden Section方法将困难的原始问题转换为一个剧烈的子问题。然后,考虑到子问题的非谐振,我们雇用伯尔斯坦不等式和Semidefinite编程(SDP)将子问题转换为可解变的。然后,我们使用标准软件包通过迭代惩罚的算法获得最佳波束成形(BF)权重向量。最后,仿真结果证实了所设计的BF方案的优越性和鲁棒性。

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