ZHANG Qiuzhao, ZHANG Shubi, LIU Zhiping, ZHENG Nanshan. Tightly-coupled GPS/SINS Integrated System Measurement Model Based on Double-difference Pseudo-range/Pseudo-range Rate[J]. Geomatics and Information Science of Wuhan University, 2015, 40(12): 1690-1694,1700. DOI: 10.13203/j.whugis20130349
Citation: ZHANG Qiuzhao, ZHANG Shubi, LIU Zhiping, ZHENG Nanshan. Tightly-coupled GPS/SINS Integrated System Measurement Model Based on Double-difference Pseudo-range/Pseudo-range Rate[J]. Geomatics and Information Science of Wuhan University, 2015, 40(12): 1690-1694,1700. DOI: 10.13203/j.whugis20130349

Tightly-coupled GPS/SINS Integrated System Measurement Model Based on Double-difference Pseudo-range/Pseudo-range Rate

  • GPS/SINStightly-coupled integration generally performs better than loosely coupled integration because they can get a navigation solution even if the number of GPS satellites is less than four. In order to improve the performance of GPS/SINS tightly-coupled integration, the measurement model of tightly-coupled GPS/INS based on double-difference pseudo-range/pseudo-range rate was proposed. The model based on double-difference pseudo-range was compared with the one based on both double-difference pseudo-range and double-difference pseudo-range rate The actual test shows that the two models can deal with the tightly-coupled integrated navigation. The accuracy of estimation and the convergent time of velocity and attitude error are improved by introducing double-difference pseudo-range rate.
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