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Energy-Efficient SWIPT: From Fully Digital to Hybrid Analog-Digital Beamforming

机译:节能SWIPT:从全数字到混合模数波束形成

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Simultaneous wireless information and power transfer (SWIPT) enables the transmission of information symbols and energy simultaneously. In this paper, we study the multiple-input-multiple-output SWIPT systems with limited RF chains at the base station. We focus on the scenario where there is one information decoder with a target signal-to-interference-plus-noise-ratio and several separate energy-harvesting receivers with harvested energy thresholds. To motivate our energy-efficient hybrid analog-digital beamforming strategy, the fully digital power minimization problem is first analyzed, where we mathematically show that the optimal beamformer consists of only the information beamformer, and derive closed-form beamformers for a number of special cases. Based on this result, we further consider hybrid beamforming and propose an iterative scheme where the analog and digital beamformers are alternately updated. For the proposed scheme, in each iteration we design the analog beamformer by minimizing the difference between the fully digital beamformer and the hybrid beamformer. Based on our above-mentioned analysis for fully digital case, the optimal solution for the analog beamformer can be obtained via a geometrical interpretation. We further design the robust beamformers for the proposed schemes, when only imperfect channel state information is available. The numerical results show that the proposed iterative designs achieve a close-to-optimal performance with significant gains in the total power consumption over fully digital SWIPT.
机译:同时无线信息和电力传输(SWIPT)能够同时传输信息符号和能量。在本文中,我们研究了基站上具有有限RF链的多输入多输出SWIPT系统。我们专注于有一个具有目标信号到干扰除噪声的一个信息解码器的场景,以及具有收获能量阈值的几个单独的能量收集接收器。为了激励我们的节能混合模数波束成形策略,首先分析了全数字功率最小化问题,在数学上,在数学上表明最佳波束形成器仅由信息波束形成器组成,并为多个特殊情况推导出闭合的波束形成器。基于此结果,我们进一步考虑混合波束成形并提出一种迭代方案,其中交替更新模拟和数字波束形成器。对于所提出的方案,在每次迭代中,我们通过最小化全数字波束形成器和混合波束形成器之间的差来设计模拟波束形成器。基于我们上述完全数字壳体的上述分析,可以通过几何解释获得模拟波束形成器的最佳解决方案。我们进一步设计了所提出的方案的强大波束形成器,仅当仅提供不完美的信道状态信息时。数值结果表明,建议的迭代设计实现了近似最优的性能,在全数字SWIPT上的总功耗中具有显着提升。

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