With the advances in virtual and augmented reality, gaming applications, and entertainment, certain indoor scenarios will require vastly higher capacity than what can be delivered by 5G. In this paper, we focus on massive MIMO for indoor environments. We provide a case study of the distributed deployment of the antenna elements over the walls of a room and not restricting the antenna separation to be half the wavelength. This is a new paradigm of massive MIMO antenna deployment, introduced under the name RadioWeaves. We investigate different antenna deployment scenarios in line of sight communication. We observe that the RadioWeaves deployment can spatially separate users much better than a conventional co-located deployment, which outweighs the losses caused by grating lobes and thus saves a lot on transmit power. Through simulations, we show that the RadioWeaves technology can provide high rates to multiple users by spending very little power at the transmitter compared to a co-located deployment.
翻译:随着虚拟和日益扩大的现实的进步、游戏应用和娱乐,某些室内情景需要比5G所能提供的能力大得多的能力。 在本文中,我们侧重于室内环境的大型MIMO。我们提供了在房间墙上分布天线元素的案例研究,而不是将天线分离限制为波长的一半。这是以RadioWaves为名推出的大规模MIMO天线部署的新范例。我们调查了视线通信中不同的天线部署情景。我们观察到,RadioWaves部署的用户在空间上可以比传统的共用地点部署更好地分开得多,这超过了悬浮天线造成的损失,从而节省了大量传输能力。我们通过模拟显示,RadioWaves技术能够向多个用户提供高速率,因为发射机的功率比共用地点部署的功率要小得多。