Cite

Cui, X., Mei, C., Qin, Y., Yan, G., & Fu, Q. (2017). In-motion alignment for low-cost SINS/GPS under random misalignment angles. Journal of Navigation, 1-17. doi: 10.1017/S037346331700039XSearch in Google Scholar

Emami, M., & Taban, M. R. (2017). A customized H-infinity algorithm for underwater navigation system: With experimental evaluation. Ocean Engineering, 130(Supplement C), 611 - 619. Retrieved from http://www.sciencedirect.com/science/article/pii/S0029801816305996 doi: https://doi.org/10.1016/j.oceaneng.2016.12.011Search in Google Scholar

Farrel, J. A. (2008). Aided navigation GPS with high rate sensors. Mc Graw Hill.Search in Google Scholar

Farrell Jay A., J. W. (2017). GNSS/INS Integration. springer handbook of global navigation satellite systems (S. I. Publishing, Ed.). Springer International Publishing.10.1007/978-3-319-42928-1_28Search in Google Scholar

Foxlin, E. (2005). Pedestrian tracking with shoe-mounted inertial sensors. IEEE Comput. Graph. Appl(25(6)), 38-46.10.1109/MCG.2005.14016315476Open DOISearch in Google Scholar

Freescale. (2012). Implementing a tilt-compensated eCompass using accelerometer and magnetometer sensors. Freescale Semiconductor Application Note.Search in Google Scholar

Groves, D. (2008). Principles of GNSS, inertial, and multisensory integrated navigation systems. Artech House.Search in Google Scholar

Henriksson, M. (2013). Estimation of heading using magnetometer and GPS.Search in Google Scholar

Li, Z., Wang, J., & Gao, J. (2016). An enhanced GPS/INS integrated navigation system with GPS observation expansion. Journal of Navigation, 69(5), 1041-1060. doi: 10.1017/S0373463315001083Search in Google Scholar

Nakath David, J. C., & Rachuy, C. (2017). Rigid body attitude control based on a manifold representation of direction cosine matrices. Journal of Physics: Conference Series., 783(1).Search in Google Scholar

Noureldin, A., Karamat, T., & J.Georgy. (2013). Fundamentals of inertial navigation, satellitebased positioning and their integration. Springer.Search in Google Scholar

Ozyagcilar, T. (2012). Calibrating an ecompass in the presence of hard and soft-iron interference. Freescale Semiconductor.Search in Google Scholar

Sabet, M., Daniali, H. M., Fathi, A., & Alizadeh, E. (2017). Experimental analysis of a low-cost dead reckoning navigation system for a land vehicle using a robust AHRS. Robotics and Autonomous Systems, 95(Supplement C), 37 - 51. Retrieved from http://www.sciencedirect.com/science/article/pii/S0921889016307497 doi: https://doi.org/10.1016/j.robot.2017.05.010Search in Google Scholar

Sasani, J. A.-S. A. R., S.and Asgari. (2016, Jan 01). Improving MEMS-IMU/GPS integrated systems for land vehicle navigation applications. GPS Solutions, 20(1), 89-100. Retrieved from https://doi.org/10.1007/s10291-015-0471-3 doi: 10.1007/s10291-015-0471-3Search in Google Scholar

Simončič, S., Klobˇcar, D., & Podržaj, P. (2015). Kalman filter based initial guess estimation for digital image correlation. Optics and Lasers in Engineering, 73(Supplement C), 80 - 88. Retrieved from http://www.sciencedirect.com/science/article/pii/S0143816615000330 doi: https://doi.org/10.1016/j.optlaseng.2015.03.001Search in Google Scholar

Tang Daquan, J. C. G., Yongkang Jiao. (2016). On automatic landing system for carrier plane based on integration of INS, GPS and vision. In Navigation and control conference (cgncc).10.1109/CGNCC.2016.7829144Search in Google Scholar

Tomaszewski, D., Rapin´ki, J., & S´mieja, M. (2015). Projekt oraz pierwsze testy zitegrowanej platformy ewaluacyjnej GPS/INS. Logistyka(3), 46-49.Search in Google Scholar

Tomaszewski, D., Rapi´ nski, J., & ´ Smieja, M. (2015). Analysis of the noise parameters and attitude alignment accuracy of INS conducted with the use of MEMS - based integrated navigation system. Acta Geodynamica et Geomaterialia, 2(12), 197-208.10.13168/AGG.2015.0017Search in Google Scholar

Wang, L., Zhang, Z., & Sun, P. (2015). Sun quaternion-based kalman filter for AHRS using an adaptive-step gradient descent algorithm. International Journal of Advanced Robotic Systems(12).10.5772/61313Search in Google Scholar

Woodman, O. (2007). An introduction to inertial navigation (Tech. Rep. No. 696). Cambridge.Search in Google Scholar

Yadav, N., & Bleakley, C. (2014). Accurate orientation estimation using AHRS under conditions of magnetic distortion. Sensors(14), 20008-20024.10.3390/s141120008427946825347584Open DOISearch in Google Scholar

Yang Ling, e. a. (2016). Seamless pedestrian navigation augmented by walk status detection and context features. In Ubiquitous positioning, indoor navigation and location based services (upinlbs).10.1109/UPINLBS.2016.7809988Search in Google Scholar

eISSN:
2391-8152
Idioma:
Inglés
Calendario de la edición:
Volume Open
Temas de la revista:
Computer Sciences, other, Geosciences, Geodesy, Cartography and Photogrammetry