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goGPS: open source software for enhancing the accuracy of low-cost receivers by single-frequency relative kinematic positioning

机译:goGPS:开源软件,可通过单频相对运动定位来提高低成本接收器的精度

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摘要

goGPS is a free and open source satellite positioning software package aiming to provide a collaborative platform for research and teaching purposes. It was first published in 2009 and since then several related projects are on-going. Its objective is the investigation of strategies for enhancing the accuracy of low-cost single-frequency GPS receivers, mainly by relative positioning with respect to a base station and by a tailored extended Kalman filter working directly on code and phase observations. In this paper, the positioning algorithms implemented in goGPS are presented, emphasizing the modularity of the software design; two specific strategies to support the navigation with low-cost receivers are also proposed and discussed, namely an empirical observation weighting function calibrated on the receiver signal-to-noise ratio and the inclusion of height information from a digital terrain model as an additional observation in the Kalman filter. The former is crucial when working with high-sensitivity receivers, while the latter can significantly improve the positioning in the vertical direction. The overall goGPS positioning accuracy is assessed by comparison with a dual-frequency receiver and with the positioning computed by a standard low-cost receiver. The benefits of the calibrated weighting function and the digital terrain model are investigated by an experiment in a dense urban environment. It comes out that the use of goGPS and low-cost receivers leads to results comparable with those obtained by higher level receivers; goGPS has good performances also in a dense urban environment, where its additional features play an important role.
机译:goGPS是一个免费的开源卫星定位软件包,旨在为研究和教学目的提供一个协作平台。它于2009年首次出版,此后几个相关项目正在进行中。其目的是研究提高低成本单频GPS接收机精度的策略,主要是通过相对于基站的相对定位,以及通过直接在代码和相位观测上直接工作的定制扩展卡尔曼滤波器。本文介绍了在goGPS中实现的定位算法,强调了软件设计的模块化;还提出和讨论了两种支持低成本接收机导航的具体策略,即一种基于接收机信噪比校准的经验观测加权函数,以及来自数字地形模型的高度信息作为附加观测的方法。卡尔曼滤波器。前者在使用高灵敏度接收器时至关重要,而后者可以显着改善垂直方向的定位。通过与双频接收器进行比较并与标准低成本接收器计算出的位置进行比较,可以评估整体goGPS的定位精度。在稠密的城市环境中,通过实验研究了校准加权函数和数字地形模型的好处。结果表明,使用goGPS和低成本接收器可以获得与更高级别接收器可比的结果; goGPS在人口稠密的城市环境中也具有良好的性能,其附加功能起着重要的作用。

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