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Validation of the Accuracy and Convergence Time of Real Time Kinematic Results Using a Single Galileo Navigation System

机译:使用单个伽利略导航系统验证实时运动结果的实时运动结果的准确性和收敛时间

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For the last two decades, the American GPS and Russian GLONASS were the basic systems used in global positioning and navigation. In recent years, there has been significant progress in the development of positioning systems. New regional systems have been created, i.e., the Japanese Quasi-Zenith Satellite System (QZSS) and Indian Regional Navigational Satellite System (IRNSS). A plan to build its own regional navigation system named Korean Positioning System (KPS) was announced South Korea on 5 February 2018. Currently, two new global navigation systems are under development: the European Galileo and the Chinese BeiDou. The full operability of both systems by 2020 is planned. The paper deals with a possibility of determination of the user's position from individual and independent global navigation satellite system (GNSS). The article is a broader concept aimed at independent determination of precise position from individual GPS, GLONASS, BeiDou and Galileo systems. It presents real time positioning results (Real Time Kinematic-RTK) using signals from Galileo satellites only. During the test, 14 Galileo satellites were used and the number of simultaneously observed Galileo satellites varied from five to seven. Real-time measurements were only possible in certain 24-h observation windows. However, their number was completed within 6 days at the end of 2017 and beginning of 2018, so there was possible to infer about the current availability, continuity, convergence time and accuracy of the RTK measurements. In addition, the systematic errors were demonstrated for the Galileo system.
机译:在过去的二十年中,美国GPS和俄罗斯Glonass是全球定位和导航中使用的基本系统。近年来,在定位系统的发展中取得了重大进展。已创建新的区域系统,即日本准Zenith卫星系统(QZSS)和印度区域航行卫星系统(IRNSS)。建立其自身区域导航系统的计划于2018年2月5日宣布韩国宣布韩国。目前,正在开发两个新的全球导航系统:欧洲伽利略和中国北斗。计划在2020年到2020年的全部可操作性。本文涉及从个人和独立的全球导航卫星系统(GNSS)确定用户的位置。该文章是一个更广泛的概念,旨在独立确定各个GPS,Glonass,北斗和伽利略系统的确切位置。它呈现实时定位结果(实时KineMatic-RTK)仅使用来自伽利略卫星的信号。在测试期间,使用了14个Galileo卫星,同时观察到的伽利略卫星的数量从五到七变化。仅在某些24小时观察窗口中仅进行实时测量。但是,他们的号码在2017年底和2018年初完成,因此有可能推断目前的RTK测量的可用性,连续性,收敛时间和准确性。此外,伽利略系统证明了系统误差。

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