Outage Constrained Robust Beamforming Design for SWIPT-Enabled Cooperative NOMA System

Binbin Su, Q. Ni, Wenjuan Yu, H. Pervaiz
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引用次数: 2

Abstract

We investigate the robust beamforming design for a simultaneous wireless information and power transfer (SWIPT) enabled system, with the cooperative non-orthogonal multiple access (NOMA) protocol applied. A novel cooperative NOMA scheme is proposed, where a strong user with better channel conditions adopts power splitting (PS) scheme and acts as an energy-harvesting relay to forward the decoded signal to the weak user. The presence of channel uncertainties is considered by introducing the outage-based constraints of signal to interference plus noise ratio (SINR). Specifically, it is assumed that only imperfect channel state information (CSI) is known at the base station (BS), due to the reason that the BS is far away from both users and suffers serious feedback delay. Our aim is to maximize the strong user's data rate, by optimally designing the robust transmit beamforming and PS ratio, while guaranteeing the correct decoding of the weak user. The proposed formulation yields to a challenging nonconvex optimization problem. To solve it, we first approximate the probabilistic constraints with the Bernstein-type inequalities, which can then be globally solved by two-dimensional exhaustive search. To further reduce the complexity, an efficient low-complexity algorithm is proposed with the aid of successive convex approximation (SCA). Numerical results show that the proposed algorithm converges quickly, and the proposed SWIPT-enabled robust cooperative NOMA system achieves better performance than existing protocols.
基于swift的协同NOMA系统的中断约束鲁棒波束形成设计
我们研究了同时无线信息和功率传输(SWIPT)系统的鲁棒波束形成设计,并应用了协作非正交多址(NOMA)协议。提出了一种新的协同NOMA方案,其中信道条件较好的强用户采用功率分割(PS)方案,作为能量收集中继将解码后的信号转发给弱用户。通过引入基于中断的信噪比约束,考虑了信道不确定性的存在。具体来说,假设基站(BS)只知道不完全信道状态信息(CSI),因为基站距离用户和用户都较远,反馈延迟严重。我们的目标是在保证弱用户正确解码的同时,通过优化设计鲁棒的发射波束形成和PS比,使强用户的数据速率最大化。提出的公式产生了一个具有挑战性的非凸优化问题。为了解决这个问题,我们首先用bernstein型不等式近似概率约束,然后用二维穷举搜索全局求解。为了进一步降低复杂度,提出了一种基于连续凸逼近的高效低复杂度算法。数值结果表明,该算法收敛速度快,基于swift的鲁棒协同NOMA系统性能优于现有协议。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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