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Deformation Monitoring and Analysis of Landslide in PPP with Dual-frequency Non-Ionosphere Combination
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作者 ZHENGGuokai CHENChen +2 位作者 MIAOMinnan GAIShixiong LIShuangfei 《外文科技期刊数据库(文摘版)工程技术》 2022年第7期132-137,共6页
In order to solve the problem of landslide hazard to people in our country, this paper takes a landslide in Shanxi province as an example, based on BDS/GPS dual-frequency ionosphere-free combination Precise Point Posi... In order to solve the problem of landslide hazard to people in our country, this paper takes a landslide in Shanxi province as an example, based on BDS/GPS dual-frequency ionosphere-free combination Precise Point Positioning (PPP), and analyzes the reliability of BDS/GPS dual-frequency ionosphere-free combination PPP in landslide deformation monitoring from convergence time and three-dimensional deformation of landslide. The research results show that the convergence of BDS/GPS dual-frequency precise point positioning can achieve centimeter-level accuracy in the landslide environment. The convergence data can accurately measure the horizontal and vertical changes of the landslide, and can provide a strong basis and support for the disaster prevention of the landslide. 展开更多
关键词 double frequency no ionosphere combination LANDSLIDE precision single point positioning deformation monitoring
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Preliminary assessment of the navigation and positioning performance of BeiDou regional navigation satellite system 被引量:133
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作者 YANG YuanXi LI JinLong +5 位作者 WANG AiBing XU JunYi HE HaiBo GUO HaiRong SHEN JunFei DAI Xian 《Science China Earth Sciences》 SCIE EI CAS 2014年第1期144-152,共9页
BeiDou regional navigation satellite system (BDS) also called BeiDou-2 has been in full operation since December 27, 2012. It consists of 14 satellites, including 5 satellites in Geostationary Orbit (GEO), 5 satel... BeiDou regional navigation satellite system (BDS) also called BeiDou-2 has been in full operation since December 27, 2012. It consists of 14 satellites, including 5 satellites in Geostationary Orbit (GEO), 5 satellites in Inclined Geosynchronous Orbit (IGSO), and 4 satellites in Medium Earth Orbit (MEO). In this paper, its basic navigation and positioning performance are evaluated preliminarily by the real data collected in Beijing, including satellite visibility, Position Dilution of Precision (PDOP) value, the precision of code and carrier phase measurements, the accuracy of single point positioning and differential position- ing and ambiguity resolution (AR) performance, which are also compared with those of GPS. It is shown that the precision of BDS code and carrier phase measurements are about 33 cm and 2 mm, respectively, which are comparable to those of GPS, and the accuracy of BDS single point positioning has satisfied the design requirement. The real-time kinematic positioning is also feasible by BDS alolae in the opening condition, since its fixed rate and reliability of single-epoch dual-frequency AR is comparable to those of GPS. The accuracy of BDS carrier phase differential positioning is better than 1 cm for a very short baseline of 4.2 m and 3 cm for a short baseline of 8.2 km, which is on the same level with that of GPS. For the combined BDS and GPS, the fixed rate and reliability of single-epoch AR and the positioning accuracy are improved significantly. The accu- racy of BDS/GPS carrier phase differential positioning is about 35 and 20 % better than that of GPS for two short baseline tests in this study. The accuracy of BDS code differential positioning is better than 2.5 m. However it is worse than that of GPS, which may result from large code multipath errors of BDS GEO satellite measurements. 展开更多
关键词 BeiDou navigation satellite system service area dilution of precision precision of code and carrier phase measurement single point positioning code differential positioning ambiguity resolution carrier phase differential positioning
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