DocumentCode
2558973
Title
Application of Unscented Kalman Filter for Flying Target Tracking
Author
Honglei Yan ; Genghua Huang ; Haiwei Wang ; Rong Shu
Author_Institution
Key Lab. of Space Active Opto-Electron. Technol., Shanghai Inst. of Tech. Phys., Shanghai, China
fYear
2013
fDate
7-8 Dec. 2013
Firstpage
61
Lastpage
66
Abstract
According to the nonlinear maneuvering characteristics of flying targets, unscented Kalman filter is used to achieve a two-dimensional trajectory tracking and predicting in the coordinates of camera view field. By calculating the target centroid position in the imaging focal plane, the third-order constant acceleration motion model of two-dimensional is established. Because of the nonlinear characteristics of flying targets, unscented transform sampling is used to update the states matrix. It is not necessary to solve the complicated Jacobian matrix which cannot be avoided in the ordinary extended Kalman filtering. Unscented Kalman filter is used to update the target prediction matrix, and the next state of the target prediction matrix is used to be the trajectory prediction value. Model simulation and data processing results show that the algorithm brings a great convenience for real-time processing platform at the coordinate of camera view field.
Keywords
Jacobian matrices; Kalman filters; target tracking; Jacobian matrix; centroid position; flying target tracking; nonlinear maneuvering characteristics; target prediction matrix; third-order constant acceleration motion model; two-dimensional trajectory tracking; unscented Kalman filter; unscented transform sampling; Acceleration; Kalman filters; Mathematical model; Noise; Prediction algorithms; Target tracking; Trajectory; Target Tracking; Unscented Kalman Filter; nonlinear filtering; simulation analyses;
fLanguage
English
Publisher
ieee
Conference_Titel
Information Science and Cloud Computing (ISCC), 2013 International Conference on
Conference_Location
Guangzhou
Print_ISBN
978-1-4799-4968-7
Type
conf
DOI
10.1109/ISCC.2013.10
Filename
6972562
Link To Document