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Design Implementation and Validation of a GNSS Measurement Exclusion and Weighting Function with a Dual Polarized Antenna

机译:双极化天线的GNSS测量排除和加权功能的设计实现和验证

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摘要

Global Navigation Satellite Systems (GNSSs) have become a ubiquitous tool for our modern society to carry out vital tasks such as transportation, civil engineering or precision agriculture. This breath has reached the realm of safety-critical applications such as time management of critical infrastructures or autonomous vehicles, in which GNSS is an essential tool nowadays. Unfortunately, current GNSS performance is not enough to fulfill the requirements of these professional and critical applications. For this reason, the FANTASTIC project was launched to boost the adoption of these applications. The project was funded by the European GNSS agency (GSA) in order to enhance the robustness and accuracy of GNSS in harsh environments. This paper presents the part related to the development of a weighting and exclusion function with a dual circularly polarized antenna. The idea is to reduce the effects of multipath by weighting and/or excluding those measurements affected by multipath. The observables and other metrics obtained from a dual polarized antenna will be exploited to define an exclusion threshold and to provide the weights. Real-world experiments will show the improvement in the positioning solution, using all available constellations, obtained with the developed technique.
机译:全球导航卫星系统(GNSS)已经成为我们现代社会执行重要任务的无处不在的工具,例如运输,土木工程或精确农业。这种呼吸已经到达了对安全至关重要的应用领域,例如对关键基础设施或自动驾驶汽车的时间管理,其中GNSS已成为当今必不可少的工具。不幸的是,当前的GNSS性能不足以满足这些专业和关键应用程序的要求。因此,启动了FANTASTIC项目以促进这些应用程序的采用。该项目由欧洲GNSS机构(GSA)资助,目的是增强GNSS在恶劣环境下的鲁棒性和准确性。本文介绍了与双圆极化天线的加权和排除功能的发展有关的部分。该想法是通过加权和/或排除受多径影响的那些测量来减少多径的影响。从双极化天线获得的可观测指标和其他指标将用于定义排除阈值并提供权重。现实世界的实验将显示,使用通过开发的技术获得的所有可用星座图,定位解决方案的改进。

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