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首页> 外文期刊>IEEE Transactions on Signal Processing >Robust Beamforming for NOMA-Based Cellular Massive IoT With SWIPT
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Robust Beamforming for NOMA-Based Cellular Massive IoT With SWIPT

机译:带有SWIPT的基于NOMA的蜂窝大规模物联网的强大波束成形

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摘要

In this paper, we study the resource allocation design for non-orthogonal multiple access (NOMA)-based cellular massive Internet-of-Things (IoT) enabled with simultaneous wireless information and power transfer (SWIPT). The design is formulated as a non-convex optimization problem, which takes into account practical and adverse factors, e.g., the channel uncertainty during channel state information (CSI) acquisition, the non-linear receiver during energy harvesting (EH) and the imperfect successive information cancellation (SIC) during the information decoding (ID). The originally harmful co-channel interference in massive access is coordinated to strike a balance between efficient information transmission and efficient energy harvesting via spatial beamforming. Subsequently, two robust beamforming algorithms are designed from the aspects of the weighted sum rate maximization and the total power consumption minimization, respectively. It is found that overall performance can be improved by adding BS antennas due to more array gains. Moreover, it is proved that the proposed algorithms can effectively alleviate the influence of adverse practical conditions and achieve the best performance compared to the baseline ones, which demonstrates the effectiveness and robustness of proposed algorithms for cellular massive IoT.
机译:在本文中,我们研究了基于非正交多路访问(NOMA)的蜂窝大规模物联网(IoT)的资源分配设计,该物联网同时具有无线信息和功率传输(SWIPT)功能。该设计被公式化为非凸优化问题,其中考虑了实际和不利因素,例如,在获取通道状态信息(CSI)时出现通道不确定性,在能量收集(EH)时出现非线性接收器以及不完美的连续信息解码(ID)期间的信息取消(SIC)。协调大规模访问中最初有害的同信道干扰,以在有效的信息传输与通过空间波束成形的有效能量收集之间取得平衡。随后,分别从加权和速率最大化和总功耗最小化两个方面设计了两种鲁棒的波束成形算法。已经发现,由于更多的阵列增益,可以通过添加BS天线来改善整体性能。此外,证明了所提出的算法与基线相比能够有效减轻不利的实际条件的影响并获得最佳性能,这证明了所提出算法对蜂窝大规模物联网的有效性和鲁棒性。

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