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Infrared/laser multi-sensor fusion and tracking based on the multi-scale model
Institution:1. Département de Génie Electrique, Faculté des Sciences et Technologie, Université Abdelhamid Ibn Badis, Mostaganem, 227 rue Belhacel, 2700, Algeria;2. Laboratoire Signaux et Images, Département d''Electronique, Faculté de Génie Electrique, Université des Sciences et de la Technologie, d''Oran, Mohamed Boudiaf, USTO, MB B.P 1505 Oran El Mnouar, Algeria;3. Department of Electrical and Electronic Engineering, Faculty of Engineering, University of Nottingham, Nottingham. NG7 2RD, England\n
Abstract:The state estimation problem of targets detected by infrared/laser composite detection system with different sampling rates was studied in this paper. An effective state estimation algorithm based on data fusion is presented. Because sampling rate of infrared detection system is much higher than that of the laser detection system, the theory of multi-scale analysis is used to establish multi-scale model in this algorithm. At the fine scale, angle information provided by infrared detection system is used to estimate the target state through the unscented Kalman filter. It makes full use of the high frequency characteristic of infrared detection system to improve target state estimation accuracy. At the coarse scale, due to the sampling ratio of infrared and laser detection systems is an integer multiple, the angle information can be fused directly with the distance information of laser detection system to determine the target location. The fused information is served as observation, while the converted measurement Kalman filter (CMKF) is used to estimate the target state, which greatly reduces the complexity of filtering process and gets the optimal fusion estimation. The simulation results of tracking a target in 3-D space by infrared and laser detection systems demonstrate that the proposed algorithm in this paper is efficient and can obtain better performance than traditional algorithm.
Keywords:Infrared/laser composite detection system  Data fusion  Multi-scale theory  CMKF
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