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Evaluation of NRTK-Based Heighting Techniques from Different Continuously Operating GNSS Reference Networks in Greece

机译:基于NRTK的基于NRTK的高宽技术从不同连续运行的GNSS参考网络中的基于GNSS参考网络

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GNSS positioning using network-based real-time kinematic (NRTK) techniques, such as the virtual reference station (VRS) and the master auxiliary concept (MAC), is widely used in surveying and geomatics applications. The accuracy of the estimated height component by those techniques is known to be at the centimeter level although several factors, like the deployment of reference stations, the correction message transmission delay, the satellite signal availability and the employed software package, could limit the vertical accuracy obtained in practice. The scope of this paper is to present preliminary results from several field tests that were conducted by the Department of Geodesy and Surveying of the Aristotle University of Thessaloniki for the purpose of evaluating the heighting accuracy from different commercial providers of NRTK positioning services in Greece. Our aim is to investigate the actual positional quality of the vertical component from an end-user's point of view by considering how different factors, such as the number of in-view satellites and their geometry, the duration of station occupancy, the distance to the reference stations and the choice of the applied correction method (VRS or MAC) might affect the final accuracy of the estimated heights. The validation of our results is based on high-quality height information that was independently obtained by precise spirit leveling over all considered test points.
机译:GNSS使用基于网络的实时运动(NRTK)技术(例如虚拟参考站(VRS)和主辅助概念(MAC)定位)广泛用于测量和地理应用程序。已知估计高度组件的精度是在厘米水平处,尽管有几个因素,如参考站的部署,校正消息传输延迟,卫星信号可用性和所采用的软件包,可能会限制垂直精度在实践中获得。本文的范围是提出由塞萨洛尼基亚里士多塞大学的大地测量和测量部门进行的初步结果,以评估来自希腊的NRTK定位服务的不同商业提供商的高度精度。我们的目标是通过考虑如何考虑不同的因素,例如视图卫星的数量以及站立的持续时间,距离的距离,距离最终用户的观点来研究垂直部件的实际位置质量。参考站和应用校正方法(VRS或Mac)的选择可能会影响估计高度的最终精度。我们的结果验证是基于通过精确的精神调平而独立获得的高质量高度信息,这些高度可以通过考虑的所有测试点进行精确的精神。

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