Empirical analysis of environmental effects on real time kinematics differential GNSS receiver

Syed Shakaib Ahmad Maulai, Abdul Malik Khan
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引用次数: 3

Abstract

Satellite navigation has been in use for the positioning for quite sometimes. Like all Electromagnetic signals, the GPS signals are also affected by the interferences. Usually the general purpose GPS receivers has the accuracy of 10 ∼ 20 meters. However, the evolution of Real Time Kinematics (RTK) resolved the problem to millimeter accuracy by employing the double differenced carrier phase measurements. RTK positioning is very popular because it provides a precise and efficient way of differential positioning. RTK technique is based on the ambiguity resolution, which is so far the most intricate part. Long initialization time and cycle slips during operation is the main drawback of this technique which increases under obstructive environmental conditions, like power outage due to tree cover and strong multipath in urban canyon. As RTK is a differential technique which uses a base station at a known location and moving rover. The distance between the rover and base station receivers directly affects the accuracy. However, at Zero Baseline which uses the same antenna for the base station and receiver, thus having same environmental effects, provides a trivial but the best possible scenario and all real life uses are more challenged than this. This paper discusses an empirical analysis of the technique during the high environmental effects on the system (Base + Rover) by employing a Zero Baseline condition. The result of the zero base line tests gives an upper bound to the accuracy of the system in any environment. To measure the accuracy, the setup was taken to the varying environmental conditions in the field and their outputs were analyzed using RTK technique.
环境对实时差分GNSS接收机运动学影响的实证分析
卫星导航用于定位已有很长一段时间了。与所有电磁信号一样,GPS信号也会受到干扰的影响。一般的GPS接收机的精度为10 ~ 20米。然而,实时运动学(RTK)的发展通过采用双差分载波相位测量将问题解决到毫米精度。RTK定位由于提供了一种精确、高效的差分定位方法而非常受欢迎。RTK技术的基础是歧义分解,这是目前最复杂的部分。该技术的主要缺点是初始化时间长和运行过程中的周期滑动,在树木覆盖和城市峡谷中强多径导致的停电等阻碍环境条件下,这种缺点会增加。由于RTK是一种差分技术,它使用在已知位置的基站和移动的漫游者。漫游车与基站接收器之间的距离直接影响精度。然而,在零基线下,基站和接收器使用相同的天线,因此具有相同的环境影响,提供了一个微不足道但最好的可能场景,所有现实生活中的使用都比这更具挑战性。本文通过采用零基线条件,讨论了该技术在高环境影响下对系统(基地+漫游者)的实证分析。零基线测试的结果给出了系统在任何环境下精度的上限。为了测量准确度,将该装置置于不同的野外环境条件下,并使用RTK技术对其输出进行分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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