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首页> 外文期刊>Wireless Communications Letters, IEEE >Secure and Energy Efficient Transmission for RSMA-Based Cognitive Satellite-Terrestrial Networks
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Secure and Energy Efficient Transmission for RSMA-Based Cognitive Satellite-Terrestrial Networks

机译:基于RSMA的认知卫星 - 地面网络的安全和节能传输

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摘要

Rate-splitting multiple access (RSMA) has recently received considerable attention due to its high efficiency in both spectral utilization and energy consumption. Inspired by this emerging technique, this letter presents a secure beamforming (BF) scheme for RSMA-based cognitive satellite terrestrial networks in the presence of multiple eavesdroppers. Assuming that the system operates in the millimeter wave band and only imperfect wiretap channel state information is available at the satellite and terrestrial base station, our objective is to maximize the secrecy-energy efficiency of the earth station (ES) while meeting the constraints on the ES secrecy rate, the cellular users' rate requirements, and transmit power budgets of the satellite and base station. As the formulated optimization problem is mathematically intractable, by applying successive convex approximation and Taylor expansion methods, we propose a robust BF scheme to convert the nonconvex objective and constraints into convex ones, which can be iteratively solved. The effectiveness and superiority of the proposed scheme are confirmed through simulation results.
机译:速率分裂多次访问(RSMA)最近由于其在光谱利用率和能耗的高效率而受到了相当大的关注。灵感来自这种新兴技术,这封信在多个窃听者的存在下呈现了基于RSMA的认知卫星地面网络的安全波束形成(BF)方案。假设系统在毫米波频带中操作,并且仅在卫星和地面基站可用的丝波频段中可用,我们的目的是最大化地球站(ES)的保密 - 能源效率,同时满足符合其限制es保密率,蜂窝用户的速率要求,以及卫星和基站的传输功率预算。由于配制的优化问题是在数学上侵扰的,通过施加连续的凸近似和泰勒扩展方法,我们提出了一种强大的BF方案,以将非膨胀目标和约束转换为凸起,这可以迭代地解决。通过模拟结果证实了所提出的方案的有效性和优越性。

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