Cite

[1] Merhav S., 1996, “Aerospace Sensor Systems and Applications”, Springer –Verlag, Chap. 5.10.1007/978-1-4612-3996-3_2 Search in Google Scholar

[2] Popowski S., 2011, „Ograniczanie błędów w nawigacji inercjalnej”. Prace Instytutu Lotnictwa, 221, Warszawa, str. 161-172. Search in Google Scholar

[3] Feliz R., Zalama E., García-Bermejo J., 2009, “Pedestrian tracking using inertial sensors”, Journal of Physical Agents, 3(1), pp. 35-42.10.14198/JoPha.2009.3.1.05 Search in Google Scholar

[4] Rahim K. A., 2012, “Heading drift mitigation for low-cost inertial pedestrian navigation”, Ph. D. thesis, University of Nottingham, UK. Search in Google Scholar

[5] Yun Cho S., 2006, “MEMS Based Pedestrian Navigation System”, The Journal Of Navigation, 59, pp. 135–153.10.1017/S0373463305003486 Search in Google Scholar

[6] Jimenez A. R., Seco F., Prieto J.C. and Guevara J., 2010, “Indoor Pedestrian Navigation using an INS/EKF framework for Yaw Drift Reduction and a foot-mounted IMU”, 7th Workshop on Positioning, Navigation and Communication.10.1109/WPNC.2010.5649300 Search in Google Scholar

[7] Godha S., Lachapelle G., Cannon M. E., 2006, “Integrated GPS/INS System for Pedestrian Navigation in a Signal Degraded Environment”, ION GNSS 2006. Search in Google Scholar

[8] Alvarez J. C., Alvarez D., López A., Rafael C. González R. C. 2012, “Pedestrian Navigation Based on a Waist-Worn Inertial Sensor”, Sensors (Basel), 12, pp. 10536-10549.10.3390/s120810536 Search in Google Scholar

[9] Grejner-Brzezinska D. A., Toth C. K., Moafipoor S., Hyoun Kwon J., 2017, “Design and calibration of a neural network-based adaptive knowledge system for multi-sensor personal navigation”, from: http://www.isprs.org/proceedings/XXXVI/5-C55/papers/dorota_brzezinska.pdf. Search in Google Scholar

[10] Nilsson J. O., Skog I., Handel P., 2012, “A note on the limitations of ZUPTs and the implications on sensor error modeling”, 2012 International Conference on Indoor Positioning and Indoor Navigation. Search in Google Scholar

[11] Szymanowski J., Grzelak J., Popowski S., 2003, “Static Initial Azimuth Update Method in Land Navigation Systems”, Annual of Navigation, 6. Search in Google Scholar

[12] Szymanowski J., Grzelak J., Popowski S., 2004, “Dynamic Initial Settings Update Method in Inertial Navigation Systems”, Annual of Navigation, 8. Search in Google Scholar

[13] Popowski S., 2011, „Weryfikacja koncepcji pomiaru wysokości i prędkości pionowej lotu wybranych obiektów latających”, Prace Instytutu Lotnictwa, 221, str. 143-160. Search in Google Scholar

[14] Jahn J., Seitz J., Patino-Studencka L., Batzer U., Boronat J. G, 2010, “Comparison and Evaluation of Acceleration Based Step Length Estimators for Handheld Devices”, 2010 International Conference on Indoor Positioning and Indoor Navigation, Zurich.10.1109/IPIN.2010.5646888 Search in Google Scholar

[15] Szpakowska-Peas E., Grabowski T., 2016, „Dokumentacja Modułu ISAN Wersja MINI”, sygnatura CTKA/DT/2016/004, materiały wewnętrzne CTKA Instytutu Lotnictwa. Search in Google Scholar

[16] Szpakowska-Peas E., Grabowski T., 2016, „Dokumentacja Modułu ISAN Wersja MIKRO”, sygnatura CTKA/DT/2016/005, materiały wewnętrzne CTKA Instytutu Lotnictwa. Search in Google Scholar

eISSN:
2545-2835
Language:
English
Publication timeframe:
4 times per year
Journal Subjects:
Engineering, Introductions and Overviews, other, Geosciences, Materials Sciences, Physics