DocumentCode :
1896157
Title :
Quasi-parabolic ionosphere modeling to track with Over-The-Horizon Radar
Author :
Bourgeois, D. ; Morisseau, C. ; Flecheux, M.
Author_Institution :
ETIS-ENSEA/UCP
fYear :
2005
fDate :
17-20 July 2005
Firstpage :
962
Lastpage :
965
Abstract :
As over-the-horizon radars use ionosphere reflection to detect and track targets, they are faced with a possible appearance of multipaths and difficulties to estimate the target ground location. To solve these problems we propose to use a ionosphere model called multi-quasi-parabolic (MQP) model. Introducing the coefficients of the MQP model into a target tracking algorithm leads to nonlinear evolution and measurement equations. Furthermore we only have estimation, through ionosphere measurements, of these parameters values. To take into account MQP parameters in a target tracking algorithm, we propose two different approaches built on the same algorithm: the unscented Kalman filter. In the first approach, we use a joint unscented Kalman filter and in the second one we use an unscented particle filter applied on both target state space and MQP parameters space (we could call this a joint unscented particle filter). We compare these two approaches and present our conclusions illustrating them by numerical simulations on the French over-the-horizon radar Nostradamus
Keywords :
Kalman filters; ionosphere; particle filtering (numerical methods); radar signal processing; radar tracking; target tracking; ionosphere reflection; joint unscented Kalman filter; joint unscented particle filter; multiquasi-parabolic model; over-the-horizon radar; quasi-parabolic ionosphere modeling; target tracking algorithm; Face detection; Ionosphere; Nonlinear equations; Numerical simulation; Particle filters; Radar detection; Radar tracking; Reflection; State-space methods; Target tracking;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Statistical Signal Processing, 2005 IEEE/SP 13th Workshop on
Conference_Location :
Novosibirsk
Print_ISBN :
0-7803-9403-8
Type :
conf
DOI :
10.1109/SSP.2005.1628733
Filename :
1628733
Link To Document :
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