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首页> 外文期刊>IEEE communications letters >Robust Beamforming Techniques for Non-Orthogonal Multiple Access Systems with Bounded Channel Uncertainties
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Robust Beamforming Techniques for Non-Orthogonal Multiple Access Systems with Bounded Channel Uncertainties

机译:具有受限通道不确定性的非正交多路访问系统的鲁棒波束成形技术

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We propose a robust beamforming design for non-orthogonal multiple access-based multiple-input single-output downlink systems. In particular, the robust power minimization problem is studied with imperfect channel state information, where the beamformers are designed by incorporating norm-bounded channel uncertainties to provide the required quality of service at each user. This robust scheme is developed based on the worst-case performance optimization framework. In terms of beamforming vectors, the original robust design is not convex; therefore, the robust beamformers cannot be obtained directly. To circumvent this non-convex issue, the original intractable problem is reformulated into a convex problem, where the non-convex constraint is converted into a linear matrix inequality by exploiting S-Procedure. Simulation results are provided to demonstrate the effectiveness of the proposed robust design.
机译:我们为非正交的基于多路访问的多输入单输出下行链路系统提出了一种鲁棒的波束成形设计。尤其是,在信道状态信息不完善的情况下研究了鲁棒的功率最小化问题,其中通过合并受范数限制的信道不确定性来设计波束形成器,从而为每个用户提供所需的服务质量。这种健壮的方案是根据最坏情况下的性能优化框架开发的。在波束形成向量方面,原始的稳健设计不是凸的;因此,不能直接获得鲁棒的波束形成器。为了规避此非凸问题,将原始的难解决的问题重新构造为凸问题,在该问题中,利用S程序将非凸约束转换为线性矩阵不等式。仿真结果表明了所提出的鲁棒设计的有效性。

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