Department of Engineering, Messina University, 98166 Messina, Italy.
International PhD Programme "Environmental Phenomena and Risks (EnPheR)", Department of Science and Technology, "Parthenope" University of Naples, 80143 Napoli, Italy.
Sensors (Basel). 2023 Apr 23;23(9):4223. doi: 10.3390/s23094223.
Employment of precise positioning techniques will enable low-cost receivers for a variety of applications. The complexity of techniques such as Precise Point Positioning (PPP), or differential techniques that require the use of external sources of corrections, could be a disadvantage for users. On the other hand, a simple technique such as Single-Point Positioning (SPP) alone does not provide high-level accuracy. Nevertheless, the entry Galileo High-Accuracy Service (HAS), even if developed to be applied on PPP, could offer a positive impact on SPP. The objective of this study is the analysis of the effects of HAS on SPP, which are evaluated for Galileo and GPS, in single- and double-constellation mode. Results are encouraging, especially on the vertical channel, where some centimetric improvements are obtained.
精确定位技术的应用将为各种应用提供低成本的接收器。对于用户来说,诸如精密单点定位(PPP)或需要使用外部校正源的差分技术等复杂技术可能是一个缺点。另一方面,像单点定位(SPP)这样简单的技术本身并不能提供高精度。然而,伽利略高精准服务(HAS)的推出,即使是为 PPP 开发的,也可能对 SPP 产生积极影响。本研究的目的是分析 HAS 对 SPP 的影响,分别评估伽利略和 GPS 在单星座和双星座模式下的影响。结果令人鼓舞,尤其是在垂直通道上,可获得一些厘米级的改进。