Optical wireless communication (OWC) is a promising technology that has the potential to provide Tb/s aggregate rates. In this paper, interference management is studied in a Laser-based optical wireless network where vertical-cavity surface-emitting (VCSEL) lasers are used for data transmission. In particular, rate splitting (RS) and hierarchical rate splitting (HRS) are proposed to align multi-user interference, while maximizing the multiplexing gain of the network. Basically, RS serves multiple users simultaneously by splitting a message of a user into common and private messages, each message with a certain level of power, while on the other side users decode their messages following a specific methodology. The performance of the conventional RS scheme is limited in high density wireless networks. Therefore, the HRS scheme is developed aiming to achieve high rates where users are divided into multiple groups, and a new message called outer common message is used for managing inter-group interference. We formulate an optimization problem that addresses power allocation among the messages of the HRS scheme to further enhance the performance of the network. The results show that the proposed approach provides high achievable rates compared with the conventional RS and HRS schemes in different scenarios.
翻译:光学无线通信(OPC)是一种很有希望的技术,有可能提供Tb/s总速率。在本文中,对干扰管理进行研究的是一个激光光学无线网络,使用垂直孔径表面排放激光进行数据传输,特别是建议分率(RS)和分级率(HRS)使多用户干扰一致,同时尽量扩大网络的多路传输收益。基本上,RS同时为多个用户服务,将用户的信息分割成普通和私人信息,每个信息都有一定的功率,而其他用户则采用特定方法解码其信息。常规RS计划在高密度无线网络中的表现有限。因此,HRS计划的目的是在用户分为多组的情况下实现高速率(RS)和分级分级分率(HRS),使用称为外部共同信息的新信息来管理群体间干扰。我们提出了一个优化问题,解决在HRS计划的信息之间分配权力的问题,以进一步提高网络的性能。结果显示,拟议的方法与不同情景下的RS和HRS计划相比,提供了高可实现率。