论文标题

IRS辅助SWIPT NOMA网络中的联合波束形成设计和功率拆分优化

Joint Beamforming Design and Power Splitting Optimization in IRS-Assisted SWIPT NOMA Networks

论文作者

Li, Zhendong, Chen, Wen, Wu, Qingqing, Wang, Kunlun, Li, Jun

论文摘要

本文提出了一个智能反射表面(IRS)同时辅助无线信息和电力传输(SWIPT)非正交多访问(NOMA)网络的新型网络框架,其中使用IRS来增强NOMA性能和无线功率传递(WPT)SWIPT的效率。我们通过共同优化连续的干扰取消(SIC)解码顺序,BS传输波束成型向量,功率分配(PS)比率(PS)比率和IRS相移,同时考虑到服务质量(QOS)需求(QOS)需求和能量收获的每个用户的阈值,从而提出了最小化基站(BS)发射功率的问题。公式的问题是非凸优化问题,很难直接解决它。因此,提出了一种两阶段算法来通过应用半fine弛豫(SDR),高斯随机化和连续的凸近似(SCA)来解决上述问题。具体而言,在通过在第一阶段设计IRS相移来确定SIC解码顺序之后,我们交替优化BS发射光束成形向量,PS比和IRS相移以最小化BS传输功率。与其他基线算法相比,数值结果验证了我们提出的优化算法在降低BS发射功率方面的有效性。同时,与非IRS辅助网络相比,IRS辅助的SWIPT NOMA网络可以将BS发射功率降低51.13 \%。

This paper proposes a novel network framework of intelligent reflecting surface (IRS)-assisted simultaneous wireless information and power transfer (SWIPT) non-orthogonal multiple access (NOMA) networks, where IRS is used to enhance the NOMA performance and the wireless power transfer (WPT) efficiency of SWIPT. We formulate a problem of minimizing base station (BS) transmit power by jointly optimizing successive interference cancellation (SIC) decoding order, BS transmit beamforming vector, power splitting (PS) ratio and IRS phase shift while taking into account the quality-of-service (QoS) requirement and energy harvested threshold of each user. The formulated problem is non-convex optimization problem, which is difficult to solve it directly. Hence, a two-stage algorithm is proposed to solve the above-mentioned problem by applying semidefinite relaxation (SDR), Gaussian randomization and successive convex approximation (SCA). Specifically, after determining SIC decoding order by designing IRS phase shift in the first stage, we alternately optimize BS transmit beamforming vector, PS ratio, and IRS phase shift to minimize the BS transmit power. Numerical results validate the effectiveness of our proposed optimization algorithm in reducing BS transmit power compared to other baseline algorithms. Meanwhile, compared with non-IRS-assisted network, the IRS-assisted SWIPT NOMA network can decrease BS transmit power by 51.13\%.

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