Centre for Wireless Communications, University of Oulu, 90014 Oulu, Finland.
Centre for Telecommunication Research, King's College London, London WC2 R2LF, UK.
Sensors (Basel). 2018 Nov 16;18(11):4001. doi: 10.3390/s18114001.
One of the key elements of future 5G and beyond mobile technology is millimeter-wave (mmWave) communications, which is targeted to extreme high-data rate services. Furthermore, combining the possibility of a wideband signal transmission with the capability of pencil-beamforming, mmWave technology is key for accurate cellular-based positioning. However, it is also well-known that at the mmWave frequency band the radio channel is very sensitive to line-of-sight blockages giving rise to unstable connectivity and inefficient communication. In this paper, we tackle the blockage problem and propose a solution to increase the communication reliability by means of a coordinated multi-point reception. We also investigate the advantage of this solution in terms of positioning quality. More specifically, we describe a robust hybrid analog⁻digital receive beamforming strategy to combat the unavailability of dominant links. Numerical examples are provided to validate the efficiency of our proposed method.
未来 5G 及更先进的移动技术的一个关键要素是毫米波 (mmWave) 通信,它旨在提供极高的数据速率服务。此外,将宽带信号传输的可能性与铅笔波束成形的能力相结合,mmWave 技术是基于蜂窝的精确定位的关键。然而,众所周知,在毫米波频段,无线电信道非常容易受到视距阻挡的影响,从而导致连接不稳定和通信效率低下。在本文中,我们解决了阻挡问题,并提出了一种通过多点协调接收来提高通信可靠性的解决方案。我们还研究了该解决方案在定位质量方面的优势。具体来说,我们描述了一种稳健的混合模拟⁻数字接收波束成形策略,以应对主导链路不可用的问题。提供了数值示例来验证我们提出的方法的效率。