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作 者:刘帅[1] 孙付平[1] 李海峰[1] 刘婧[1] 郝万亮[1]
机构地区:[1]信息工程大学导航与空天目标工程学院,河南郑州450001
出 处:《武汉大学学报(信息科学版)》2016年第9期1238-1244,共7页Geomatics and Information Science of Wuhan University
基 金:国家自然科学基金(41374027)~~
摘 要:与模糊度为浮点解的精密单点定位(precise point positioning,PPP)相比,PPP模糊度固定技术具有更快的收敛速度和更好的定位精度。但当GPS卫星数目少或几何构形不好时,需要较长时间实现GPS PPP模糊度的首次固定,通过加入GLONASS卫星可以有效缩短首次固定时间。推导了基于整数相位钟法的GPS/GLONASS组合PPP模型并进行了大量实验解算。40组静态模拟动态实验表明,GPS PPP模糊度首次固定平均需要50.2min,但在GLONASS辅助下只需25.7min,减少了48.8%,而且定位精度也有提高。车载动态实验表明,由于受观测条件限制,GPS PPP模糊度难以固定,但在GLONASS辅助下仍能实现GPS PPP模糊度固定。Compared to ambiguity-float precise point positioning(PPP),ambiguity-fixed PPP needs a short convergence time and has better positioning accuracy.However,when there are only a few GPS satellites without an optimal geometrical distribution,ambiguity-fixed PPP requires time to achieve a first fixed solution.The objective of our research was to reduce the time to first fixed solution(TFFS)for GPS-only PPP by adding GLONASS satellites.An observation model for GPS/GLONASS ambiguity-fixed PPP using the integer phase clock method was developed and tested.Forty kinematic tests using static data show that the average TFFS is 50.2min for GPS ambiguity-fixed PPP while only 25.7min for GPS/GLONASS ambiguity-fixed PPP;reduced by 48.8% after adding GLONASS observations.A vehicular test demonstrates that GPS-only PPP cannot get its first fixed solution due to a less than ideal observation environment while GPS/GLONASS PPP can realize ambiguity fixing.
关 键 词:GPS GLONASS 精密单点定位 模糊度固定 整数相位钟法 首次固定时间
分 类 号:P228.41[天文地球—大地测量学与测量工程]
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