DocumentCode
1810245
Title
Constrained target motion modeling — Part I: Straight line track
Author
Zhansheng Duan ; Li, X. Rong
Author_Institution
Center for Inf. Eng. Sci. Res., Xian Jiaotong Univ., Xian, China
fYear
2013
fDate
9-12 July 2013
Firstpage
2153
Lastpage
2160
Abstract
Straight line motion is one of the most fundamental target motions. Its modeling has been well studied for unconstrained targets, e.g., air targets. However, the existing straight line motion models can not be directly used for the constrained case on straight line tracks, which has wide application, e.g., in ground target tracking. In this paper, modeling of the constrained target motion on a straight line track is considered. First, the constraints imposed by the straight track are explicitly set up. Then both direct elimination and projection along-track are applied to obtain two forms of constrained motion models in the 2D Cartesian plane and 3D Cartesian space. The connections between these two forms are studied. It is found that the traditional linear Gaussian assumption is still valid for the nearly constant velocity models, the nearly constant acceleration models and the Singer model. Inspired by this, a general condition under which the traditional linear Gaussian assumption is valid for modeling of constrained motion on a straight track is also discussed.
Keywords
Gaussian processes; target tracking; 2D Cartesian plane; 3D Cartesian space; Singer model; constrained target motion modeling; direct elimination; direct projection; ground target tracking; linear Gaussian assumption; nearly constant acceleration models; nearly constant velocity models; straight line motion model; straight line track; Acceleration; Atmospheric modeling; Noise; State estimation; System analysis and design; Target tracking; Unconstrained system; constrained system; straight line track; target motion modeling;
fLanguage
English
Publisher
ieee
Conference_Titel
Information Fusion (FUSION), 2013 16th International Conference on
Conference_Location
Istanbul
Print_ISBN
978-605-86311-1-3
Type
conf
Filename
6641273
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