GNSS World of China
Citation: | LIU Ao, GUO Hang, XIONG Jian, WANG Mengli. GNSS/IMU/LiDAR fusion positioning research[J]. GNSS World of China, 2024, 49(3): 73-79. doi: 10.12265/j.gnss.2024013 |
[1] |
KINDERVATTER T H, TEIXEIRA F L. Tropospheric and ionospheric effects on Global Navigation Satellite Systems[M]. John Wiley & Sons, 2022.
|
[2] |
ERSHAD M, ALI E. Global Positioning System (GPS): definition, principles, errors, applications & DGPS[J/OL]. [2023-12-23]. 2020. https://doc.taixueshu.com/foreign/rgPres2020129418177.html
|
[3] |
GROVES P D. Principles of GNSS, inertial, and multisensor integrated navigation systems.[J]. IEEE aerospace and electronic systems magazine, 2015, 30(2): 26-27. DOI: 10.1109/MAES.2014.14110
|
[4] |
李正帅, 缪玲娟, 周志强, 等. GNSS/SINS组合导航中多路径效应的识别与抑制算法[J]. 导航定位与授时, 2022, 9(4): 85-92.
|
[5] |
金耀, 周又眉, 张贺, 等. 北斗+5G融合定位技术研究及应用进展[J]. 全球定位系统, 2023, 48(4): 12-18. DOI: 10.12265/j.gnss.2023091
|
[6] |
VANA S, BISNATH S. Enhancing navigation in difficult environments with low-cost, dual-frequency GNSS PPP and MEMS IMU[C]//International Association of Geodesy., General Assembly, 2022: 143-150. DOI: 10.1007/1345_2020_118
|
[7] |
SUN X, ZHUANG Y, CHEN S, et al. Tightly-coupled RTK/ins integrated navigation using a low-cost GNSS receiver and a MEMS IMU[J]. The international archives of the photogrammetry, remote sensing and spatial information sciences, 2022(46): 185-190. DOI: 10.5194/isprs-archives-xlvi-3-w1-2022-185-2022
|
[8] |
YUAN Y L, LI F, CHEN J L, et al. An improved Kalman filter algorithm for tightly GNSS/INS integrated navigation system[J]. Mathematical biosciences and engineering, 2024, 21(1): 963-983. DOI: 10.3934/mbe.2024040
|
[9] |
LI X X, HUANG J X, LI X, et al. Review of PPP–RTK: achievements, challenges, and opportunities[J]. Satellite navigation, 2022, 3(1): 28. DOI: 10.1186/s43020-022-00089-9
|
[10] |
FENG Y H, HUANG G W, LI X, et al. Adaptive BDS/MEMS INS navigation algorithm for low-dynamic carrier based on motion characteristics detection and dual-antenna Position/Velocity constraints[J]. Measurement, 2024, 225: 114037. DOI: 10.1016/j.measurement.2023.114037
|
[11] |
冯祎, 涂锐, 韩军强, 等. 一种GNSS/视觉观测紧组合导航定位算法研究[J]. 全球定位系统, 2021, 46(6): 49-54.
|
[12] |
张哲浩, 潘林. 多系统融合单点定位先验和验后定权研究[J]. 全球定位系统, 2021, 46(3): 1-6. DOI: 10.12265/j.gnss.2021010401
|
[13] |
ZHANG J, SINGH S. LOAM: Lidar odometry and mapping in real-time[C]//Robotics: Science and Systems. 2014, 2(9): 1-9. DOI: 10.15607/RSS.2014.X.007
|
[14] |
严恭敏. 捷联惯导算法及车载组合导航系统研究[D]. 西安: 西北工业大学, 2004.
|
[15] |
严恭敏, 杨小康, 翁浚, 等. 一种无误差的捷联惯导数值更新新算法[J]. 导航定位学报, 2018, 6(2): 20-22,35.
|
[16] |
秦永元. 卡尔曼滤波与组合导航原理[M]. 西安: 西北工业大学出版社, 2021.
|
[17] |
刘席天. 城市半遮蔽环境下GNSS/INS组合导航算法设计与实现[D]. 徐州: 中国矿业大学, 2023.
|
[18] |
王甫红, 栾梦杰, 程雨欣, 等. 城市环境下智能手机车载GNSS/MEMS IMU紧组合定位算法[J]. 武汉大学学报(信息科学版), 2023, 48(7): 1106-1116.
|