IEEC-CERES, Universitat Autònoma de Barcelona (UAB), 08193 Bellaterra, Barcelona, Spain.
Airbus Defence and Space, 82024 Taufkirchen, Germany.
Sensors (Basel). 2021 Dec 24;22(1):101. doi: 10.3390/s22010101.
Accurate and reliable positioning solution is an important requirement for many applications, for instance, emergency services and vehicular-related use cases. Positioning using cellular signals has emerged as a promising solution in Global Navigation Satellite System (GNSS) challenging environments, such as deep urban canyons. However, harsh working conditions of urban scenarios, such as with dense multipath and Non-Line of Sight (NLoS), remain as one of the key factors causing the detriment of the positioning estimation accuracy. This paper demonstrates that the use of joint Uplink Time Difference of Arrival (UTDoA) and Angle of Arrival (AoA) gives a significant improvement in the position accuracy thanks to the use of antenna arrays. The new advances of this technology enable more accurate user locations by exploiting angular domains of propagation channel in combination with time measurements. Moreover, it is shown that a better localization is achieved by combining the joined UTDoA and AoA with a base-station selective exclusion method that is able to detect and eliminate measurements affected by NLoS. The proposed approach has been tested through simulations based on a deep urban deployment map, which comes with an experimental data file of the user's position. A sounding reference signal of 5G new radio operating in the centimeter-wave band is used. The obtained results add value to the use of advance antennas in 5G positioning. In addition, they contribute towards the fulfillment of high-accuracy positioning requirements in challenging environments when using cellular networks.
精确可靠的定位解决方案是许多应用的重要要求,例如紧急服务和与车辆相关的用例。在全球导航卫星系统 (GNSS) 挑战性环境中,使用蜂窝信号进行定位已成为一种有前途的解决方案,例如在深城市峡谷中。然而,城市场景的恶劣工作条件,例如密集的多径和非视距 (NLoS),仍然是导致定位估计精度降低的关键因素之一。本文证明,由于使用天线阵列,联合上行链路到达时间差 (UTDoA) 和到达角 (AoA) 的使用可以显著提高定位精度。这项技术的新进展通过利用传播信道的角度域与时间测量相结合,实现了更精确的用户位置。此外,还表明,通过结合联合 UTDoA 和 AoA 与基站选择性排除方法,可以实现更好的定位,该方法能够检测和消除受 NLoS 影响的测量。该方法已经通过基于用户位置的实验数据文件的深度城市部署图的模拟进行了测试。使用了在厘米波段运行的 5G 新无线电的探测参考信号。所获得的结果增加了在 5G 定位中使用先进天线的价值。此外,它们有助于满足在使用蜂窝网络时在挑战性环境中对高精度定位的要求。