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国家重点基础研究发展计划(2009CB72400205)

作品数:2 被引量:29H指数:2
相关作者:高周正章红平牛小骥伍岳更多>>
相关机构:武汉大学三峡大学更多>>
发文基金:国家自然科学基金国家重点基础研究发展计划国家高技术研究发展计划更多>>
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Global modeling 2^(nd)-order ionospheric delay and its effects on GNSS precise positioning被引量:5
2011年
Ionospheric delay is one of the major error sources in GNSS navigation and positioning.Nowadays,the dual-frequency technique is the most widely used in ionospheric refraction correction.However,dual-frequency measurements can only eliminate the first-order term of ionospheric delay,while the effect of the second-order term on GNSS observations may be several centimeters.In this paper,two models,the International Reference Ionosphere (IRI) 2007 and International Geomagnetic Reference Field (IGRF) 11 are used to estimate the second-order term through the integral calculation method.Besides,the simplified single layer ionosphere model in a dipole moment approximation for the earth magnetic field is used.Since the traditional integral calculation method requires large calculation load and takes much time,it is not convenient for practical use.Additionally,although the simplified single layer ionosphere model is simple to implement,it results in larger errors.In this study,second-order term ionospheric correction formula proposed by Hoque (2007) is improved for estimating the second-order term at a global scale.Thus,it is more practicable to estimate the second-order term.More importantly,its results have a higher precision of the sub-millimeter level for a global scale in normal conditions.Compared with Hoque's original regional correction model,which calculates coefficients through polynomial fitting of elevation and latitudes,this study proposes a piece-wise look-up table and interpolation technique to modify Hoque model.Through utilizing a table file,the modified Hoque model can be conveniently implemented in an engineering software package,like as PANDA in this study.Through applying the proposed scheme for the second-order ionospheric correction into GNSS precise positioning in both PPP daily and epoch solutions,the results have shown south-shift characteristics in daily solution at a global scale and periodic change with VTEC daily variation in epoch positioning solution.
ZHANG HongPingLV HaiXiaLI MinSHI Chuang
GPS非差非组合精密单点定位算法研究被引量:24
2013年
首先介绍了非差非组合精密单点定位(precise point positioning,PPP)算法,分析了它与传统PPP的差异;处理了300个IGS跟踪站连续7d的数据,分析了接收机伪距硬件延迟偏差(difference code bias,DCB)和先验电离层精度对非差非组合PPP收敛速度的影响。统计结果表明,对于非差非组合PPP,利用IGS提供的全球电离层延迟模型GIM,静态定位精度N/E方向均收敛到10cm以内,估计接收机DCB的PPP平均收敛速度为13.12min,比不估计接收机DCB的PPP快5.36min,与传统的LC PPP相当。在获得高精度电离层先验数据的条件下,估计接收机DCB的非差非组合PPP平面精度收敛10cm的速度约为8.67min,比传统PPP收敛速度平均快约3.26min。
章红平高周正牛小骥伍岳
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