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首页> 外文期刊>Journal of earth system science >A new PPP algorithm for deformation monitoring with single-frequency receiver
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A new PPP algorithm for deformation monitoring with single-frequency receiver

机译:一种用于单频接收机变形监测的PPP新算法

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Considering the applications of deformation monitoring, PPP (precise point positioning) with singlefrequency (SF) receivers has the advantages of stand-alone, absolute positioning and cost efficiency. However, the existing SF PPP methods can be hardly implemented for deformation monitoring directly due to their limited precision of submeter level. For this purpose, an innovative approach is presented in this paper with several improvements to the existing approaches: firstly, the SEID (Satellite-specific Epoch-differenced Ionospheric Delay) model is adopted in SF kinematic PPP to handle the ionospheric delays for SF receivers embedded in networks of dual-frequency (DF) receivers; secondly, according to the dynamic characteristic of the monitor station, a combination of kinematic PPP and sliding window based static PPP algorithm is adopted. To confirm the availability of the algorithm for deformation monitoring with SF receiver, a seismic experiment is carried out on an earthquake simulation platform. Comparable positioning precision with 1.5 cm for horizontal and 2.2 cm for vertical is achieved by SF PPP with respect to RTK (real-time kinematic) solution. The new deformation monitoring algorithm with SF receiver can be treated as an effective and low cost way to realize some types of geological hazard monitoring in a wide range.
机译:考虑到形变监测的应用,具有单频(SF)接收器的PPP(精确点定位)具有独立,绝对定位和成本效益的优点。但是,现有的SF PPP方法由于其亚米级精度有限而很难直接用于变形监测。为此,本文提出了一种创新方法,并对现有方法进行了一些改进:首先,SF运动学PPP中采用了SEID(卫星特定的时差电离层延迟)模型来处理嵌入式SF接收机的电离层延迟。在双频(DF)接收器网络中;其次,根据监测站的动态特性,采用运动学PPP和基于滑动窗口的静态PPP算法相结合。为了确认使用SF接收器进行变形监测的算法的可用性,在地震模拟平台上进行了地震实验。相对于RTK(实时运动)解决方案,SF PPP实现了水平位置1.5厘米,垂直位置2.2厘米的可比定位精度。带有SF接收器的新的变形监测算法可以被视为一种有效且低成本的方法,可以在广泛的范围内实现某些类型的地质灾害监测。

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