DocumentCode :
518745
Title :
CDF-KF algorithm for conditionally linear Gaussian state space models
Author :
Yin, Jian Jun ; Zhang, Jian Qiu ; Zhao, Jin
Author_Institution :
Electron. Eng. Dept., Fudan Univ., Shanghai, China
Volume :
4
fYear :
2010
fDate :
27-29 March 2010
Firstpage :
495
Lastpage :
498
Abstract :
We propose a new algorithm, called the central difference filter - Kalman filter (CDF-KF) for conditionally linear Gaussian state space models. The linear state equation is firstly inserted into the measurement equation, and the CDF is applied to the new measurement and the nonlinear state equations to estimate the nonlinear states, where after the estimated means of the nonlinear states are substituted into the linear state equation and the original measurement equation to estimate the linear states using the Kalman filter (KF). Moreover, in order to improve the accuracy of the estimation, the estimated covariances of the nonlinear states are fed back to modify the estimations of the linear states. The simulation results of the proposed CDF-KF applying to target tracking show that it only consumes about 5% the computing time required by the Rao-Blackwellized particle filter (RBPF), while the consistent filtering performance is kept.
Keywords :
Gaussian processes; Kalman filters; state-space methods; CDF-KF algorithm; Kalman filter; Rao-Blackwellized particle filter; central difference filter; conditionally linear Gaussian state space models; nonlinear state equations; Computational modeling; Filtering algorithms; Markov processes; Nonlinear equations; Nonlinear filters; Particle filters; Signal processing algorithms; State estimation; State-space methods; Target tracking; Kalman filtering; nonlinear estimation; signal processing; tracking;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Advanced Computer Control (ICACC), 2010 2nd International Conference on
Conference_Location :
Shenyang
Print_ISBN :
978-1-4244-5845-5
Type :
conf
DOI :
10.1109/ICACC.2010.5486900
Filename :
5486900
Link To Document :
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