DocumentCode :
3328353
Title :
Reduced Mode-Tree Expansion Rates in Jump Markov Estimators
Author :
Kronhamn, Thomas R.
Author_Institution :
Saab Microwave Syst., Saab AB, Gothenburg
fYear :
2007
fDate :
12-14 Dec. 2007
Firstpage :
157
Lastpage :
160
Abstract :
In jump Markov linear systems, estimators usually consider possible mode changes at each measurement occasion. This paper shows that mode-tree expansion in jump Markov estimators can be done at rates lower than the measurement rate, with great savings in computations. In fact, even gains in performance can be made by choosing the right mode expansion rate. The paper shows the results from Monte Carlo simulations of a simple two-mode Markov system. The estimators used are the pruned optimal Bayesian estimator and the generalized pseudo Bayesian of order 2. The estimators are run with mode-tree expansions at the measurement rate as well as with reduced rates. The results show considerable savings in computations and optimum RMSE performance for a mode-tree expansion rate 2-4 times the highest mean transition rate of the modes. A tractable approximation of the CRLB for jump Markov linear systems is also introduced as a performance reference for the cases tested.
Keywords :
Bayes methods; Markov processes; Monte Carlo methods; estimation theory; linear systems; mean square error methods; trees (mathematics); CRLB; Monte Carlo simulations; RMSE; generalized pseudoBayesian estimator; jump Markov linear systems; pruned optimal Bayesian estimator; reduced mode-tree expansion rate; tractable approximation; Bayesian methods; Filters; Gaussian noise; High performance computing; Linear systems; Microwave measurements; Noise measurement; Performance gain; Q measurement; Time measurement; Bayes procedures; CRLB; Jump Markov processes; Multiple models; tracking;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Computational Advances in Multi-Sensor Adaptive Processing, 2007. CAMPSAP 2007. 2nd IEEE International Workshop on
Conference_Location :
St. Thomas, VI
Print_ISBN :
978-1-4244-1713-1
Electronic_ISBN :
978-1-4244-1714-8
Type :
conf
DOI :
10.1109/CAMSAP.2007.4497989
Filename :
4497989
Link To Document :
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