TY - GEN
T1 - The study of high precision assistant navigation system with micro-magnetic sensors
AU - Huang, Xuegong
AU - Fang, Jiancheng
AU - Guo, Lei
AU - Jiang, Yanwei
PY - 2007
Y1 - 2007
N2 - Low-cost MEMS sensors often suffer from inaccuracy and are influenced greatly by temperature variation, and the orientation error is cumulate with time. The GPS can provide long term stability with high accuracy, but it has its insufficiencies, such as disturbed easy, lower data updating rate and so on, it is hard to meet the demand of real-time measuring. The micro-magnetic sensors, an independence precision tool, can offer real-time yaw attitude angle, and this can correct the orientation cumulate error, and it increase the independence in flight of the UAV. Based on analyzing the selection principles of testing sensor, comparing 3 kinds micro-magnetic sensors, the GMI magnetic sensor is best to test geomagnetic field. The Regional model of geomagnetic field is built, and a GMI-magnetic sensor navigation method is put forward. Three-axis magnetic sensor measure the geomagnetic field, and it is matching with the geomagnetic map, then the geomagnetic elements on currently position are knew, combining with the information of accelerometer, the position information can be gotten by matching algorithm.
AB - Low-cost MEMS sensors often suffer from inaccuracy and are influenced greatly by temperature variation, and the orientation error is cumulate with time. The GPS can provide long term stability with high accuracy, but it has its insufficiencies, such as disturbed easy, lower data updating rate and so on, it is hard to meet the demand of real-time measuring. The micro-magnetic sensors, an independence precision tool, can offer real-time yaw attitude angle, and this can correct the orientation cumulate error, and it increase the independence in flight of the UAV. Based on analyzing the selection principles of testing sensor, comparing 3 kinds micro-magnetic sensors, the GMI magnetic sensor is best to test geomagnetic field. The Regional model of geomagnetic field is built, and a GMI-magnetic sensor navigation method is put forward. Three-axis magnetic sensor measure the geomagnetic field, and it is matching with the geomagnetic map, then the geomagnetic elements on currently position are knew, combining with the information of accelerometer, the position information can be gotten by matching algorithm.
KW - Geomagnetic field
KW - Geomagnetic map
KW - Magnetic sensor
KW - Match
KW - Navigation
UR - https://www.scopus.com/pages/publications/42949104028
U2 - 10.1117/12.774009
DO - 10.1117/12.774009
M3 - 会议稿件
AN - SCOPUS:42949104028
SN - 9780819469601
T3 - Proceedings of SPIE - The International Society for Optical Engineering
BT - Second International Conference on Space Information Technology
T2 - 2nd International Conference on Space Information Technology
Y2 - 10 November 2007 through 11 November 2007
ER -