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削弱电离层影响的三频TurboEdit周跳处理方法
引用本文:黄令勇,翟国君,欧阳永忠,陆秀平,吴太旗,邓凯亮.削弱电离层影响的三频TurboEdit周跳处理方法[J].测绘学报,2015,44(8):840-847.
作者姓名:黄令勇  翟国君  欧阳永忠  陆秀平  吴太旗  邓凯亮
作者单位:1. 中国天绘卫星中心, 北京 102102;2. 信息工程大学地理空间信息学院, 河南 郑州 450001;3. 海洋测绘研究所, 天津 300061
基金项目:国家自然科学基金(41274015;U1431115),国家863计划(2013AA122501)Foundation support:The National Natural Science Foundation of China(.41274015
摘    要:针对电离层活跃期或磁暴发生时,现有三频周跳探测方法难以正确探测与修复周跳的问题,借鉴双频TurboEdit思想,提出了能够削弱电离层延迟影响的三频TurboEdit方法。该算法中的三频无几何无电离层码相组合和两次历元差分后的相位无几何组合,均能有效削弱电离层延迟对周跳探测的影响。随后利用三频实测数据对本文算法进行了验证,试验结果表明该方法能够消除电离层延迟影响,实现电离层活跃观测条件下动态非差周跳的实时探测与修复。

关 键 词:三频GNSS  周跳探测与修复  无几何无电离层码相组合  相位无几何组合  两次历元差分  
收稿时间:2014-07-21
修稿时间:2014-11-24

Triple-frequency TurboEdit Cycle-slip Processing Method of Weakening Ionospheric Activity
HUANG Lingyong,ZHAI Guojun,OUYANG Yongzhong,LU Xiuping,WU Taiqi,DENG Kailiang.Triple-frequency TurboEdit Cycle-slip Processing Method of Weakening Ionospheric Activity[J].Acta Geodaetica et Cartographica Sinica,2015,44(8):840-847.
Authors:HUANG Lingyong  ZHAI Guojun  OUYANG Yongzhong  LU Xiuping  WU Taiqi  DENG Kailiang
Institution:1. Tianhui Satellite Center of China, Beijing 102102, China;2. Institute of Surveying and Mapping, Information Engineering University, Zhengzhou 450052, China;3. Navy Hydrographic Surveying and Charting, Tianjin 300061, China
Abstract:The existing triple-frequency cycle-slip detection method usually can not detect and repair the cycle-slip correctly in the ionospheric activity phase or when the magnetic storm happening.To solve the problem,the triple-frequency TurboEdit method for weakening the ionospheric error is advanced based on the dual-frequency TurboEdit method.Both the triple-frequency geometry-free and ionospheric-free combination and second-order time-difference phase geometry-free combination in this algorithm can whittle the influence of ionospheric error effectively.And then,the triple-frequency data is used to validate this algorithm,the experiment results show that this method can weaken the ionospheric error and realize the no-difference dynamicreal-time cycle-slip detection and correction under ionospheric activity phase.
Keywords:triple-frequency GNSS  cycle-slip detection and correction  geometry-free and ionospheric-free combination  phase geometry-free combination  second-order time-difference
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