This paper addresses robust beamforming design for rate splitting multiple access (RSMA)-aided multiple-input single-output (MISO) visible light communication (VLC) networks. In particular, since the channel capacity of VLC is yet unknown, we derive the first theoretical bound of channel capacity of RSMA-aided VLC networks, i.e., achievable rates with closed-form expressions. For the perfect channel state information (CSI) scenario, we investigate the beamforming design to minimize the transmitted power of RSMA-aided VLC networks under the quality of service (QoS) constraint of each user and the optical power constraints, and propose a constrained-convex-concave programming (CCCP)-based beamforming design algorithm to obtain high-quality beamformers. Moreover, for the imperfect CSI scenario, we propose a robust CCCP-based beamforming design scheme for RSMA-aided VLC networks by exploiting semidefinite relaxation (SDR) technique and S-lemma. Numerical results show that the proposed RSMA schemes offer a significant spectral efficiency gain over the existing space-division multiple access (SDMA) scheme and non-orthogonal multiple access (NOMA) scheme.
翻译:本文论述分速、多存取(RSMA)辅助多投入单发光通信(VLC)网络的强光成形设计,特别是由于VLC的频道能力尚不为人知,因此我们获得RSMA辅助VLC网络的频道能力的第一个理论约束,即以封闭式表达式表示的可实现率。关于完美的频道状态信息(CSI)设想,我们调查波成形设计,以最大限度地减少RSMA辅助VLC网络在服务质量(QOS)下对每个用户的制约和光学功率限制下的传输能力,并提出基于限制-convex-concavevey(CCCP)的组合设计算法,以获得高质量的信号。此外,对于不完善的 CSI假设,我们建议为RSMA辅助VLC网络开发一个以CCCP为基础的强有力的组合设计方案,利用半定型放松调(SDR)技术和S-lemma。 Numicalalalal 计划提供了一种重大的多光谱访问率计划(SDMA) 和现有多光谱访问率(SDA) 计划。