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Secure Satellite Communication Systems Design With Individual Secrecy Rate Constraints

机译:具有个别保密率约束的安全卫星通信系统设计

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In this paper, we study multibeam satellite secure communication through physical (PHY) layer security techniques, i.e., joint power control and beamforming. By first assuming that the channel state information (CSI) is available and the beamforming weights are fixed, a novel secure satellite system design is investigated to minimize the transmit power with individual secrecy rate constraints. An iterative algorithm is proposed to obtain an optimized power allocation strategy. Moreover, suboptimal beamforming weights are obtained by completely eliminating the cochannel interference and nulling the eavesdroppers' signal simultaneously. In order to obtain jointly optimized power allocation and a beamforming strategy in some practical cases, e.g., with certain estimation errors of the CSI, we further evaluate the impact of the eavesdropper's CSI on the secure multibeam satellite system design. The convergence of the iterative algorithm is proven under justifiable assumptions. The performance is evaluated by taking into account the impact of the number of antenna elements, number of beams, individual secrecy rate requirement, and CSI. The proposed novel secure multibeam satellite system design can achieve optimized power allocation to ensure the minimum individual secrecy rate requirement. The results show that the joint beamforming scheme is more favorable than the fixed beamforming scheme, especially in the cases of a larger number of satellite antenna elements and higher secrecy rate requirement. Finally, we compare the results under the current satellite air-interface in DVB-S2 and the results under Gaussian inputs.
机译:在本文中,我们研究了通过物理(PHY)层安全技术(即联合功率控制和波束成形)进行的多波束卫星安全通信。首先,假设信道状态信息(CSI)是可用的,并且波束成形权重是固定的,因此研究了一种新颖的安全卫星系统设计,以最小化具有单独保密速率约束的发射功率。提出了一种迭代算法来获得优化的功率分配策略。此外,通过完全消除同信道干扰并同时使窃听者的信号为零,可以获得次优的波束成形权重。为了在某​​些实际情况下(例如具有CSI的某些估计误差)获得联合优化的功率分配和波束成形策略,我们进一步评估了窃听者的CSI对安全多波束卫星系统设计的影响。在合理的假设下证明了迭代算法的收敛性。通过考虑天线元件数量,波束数量,单个保密速率要求和CSI的影响来评估性能。所提出的新颖的安全多波束卫星系统设计可以实现优化的功率分配,以确保最低的个人保密率要求。结果表明,联合波束成形方案比固定波束成形方案更有利,尤其是在卫星天线元件数量更多且保密率要求更高的情况下。最后,我们将DVB-S2中当前卫星空中接口下的结果与高斯输入下的结果进行比较。

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