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Asynchronous RTK Method for Detecting the Stability of the Reference Station in GNSS Deformation Monitoring

机译:GNSS变形监测中参考站稳定性的异步RTK方法

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摘要

The real-time kinematic (RTK) positioning technique of global navigation satellite systems (GNSS) has been widely used for deformation monitoring in the past several decades. The RTK technique can provide relative displacements in a local reference frame defined by a highly stable reference station. However, the traditional RTK solution does not account for reference stations that experience displacement. This presents a challenge for establishing a near real-time GNSS monitoring system, as since the displacement of a reference station can be easily misinterpreted as a sign of rapid movement at the monitoring station. In this study, based on the reference observations in different time domains, asynchronous and synchronous RTK are proposed and applied together to address this issue, providing more reliable displacement information. Using the asynchronously generated time difference of a reference frame, the proposed approach can detect whether a measured displacement has occurred in the reference or the monitoring station in the current epoch. This allows for the separation of reference station movements from monitoring station movements. The results based on both simulated and landslide monitoring data demonstrate that the proposed method can provide reliable displacement determinations, which are critical in deformation monitoring applications, such as the early warning of landslides.
机译:在过去的几十年中,全球导航卫星系统(GNSS)的实时运动(RTK)定位技术已广泛用于变形监测。 RTK技术可以在由高度稳定的参考站定义的本地参考帧中提供相对位移。但是,传统的RTK解决方案不考虑遇到位移的参考站。这对建立近实时GNSS监视系统提出了挑战,因为参考站的位移很容易被误解为监视站快速移动的标志。在这项研究中,基于在不同时域的参考观测结果,提出了异步和同步RTK并一起用于解决此问题,从而提供了更可靠的位移信息。使用异步生成的参考帧的时间差,所提出的方法可以检测在当前时期在参考站或监视站中是否已发生测量到的位移。这允许将参考站运动与监视站运动分开。基于模拟和滑坡监测数据的结果表明,该方法可以提供可靠的位移确定,这对变形监测应用(例如滑坡的预警)至关重要。

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