Validation Gating for Non-Linear Non-Gaussian Target Tracking


Autoria(s): Bailey, Tim; Upcroft, Ben; Durrant-Whyte, Hugh
Data(s)

2006

Resumo

This paper develops a general theory of validation gating for non-linear non-Gaussian mod- els. Validation gates are used in target tracking to cull very unlikely measurement-to-track associa- tions, before remaining association ambiguities are handled by a more comprehensive (and expensive) data association scheme. The essential property of a gate is to accept a high percentage of correct associ- ations, thus maximising track accuracy, but provide a su±ciently tight bound to minimise the number of ambiguous associations. For linear Gaussian systems, the ellipsoidal vali- dation gate is standard, and possesses the statistical property whereby a given threshold will accept a cer- tain percentage of true associations. This property does not hold for non-linear non-Gaussian models. As a system departs from linear-Gaussian, the ellip- soid gate tends to reject a higher than expected pro- portion of correct associations and permit an excess of false ones. In this paper, the concept of the ellip- soidal gate is extended to permit correct statistics for the non-linear non-Gaussian case. The new gate is demonstrated by a bearing-only tracking example.

Formato

application/pdf

Identificador

http://eprints.qut.edu.au/41644/

Publicador

IEEE

Relação

http://eprints.qut.edu.au/41644/1/41644.pdf

DOI:10.1109/ICIF.2006.301597

Bailey, Tim, Upcroft, Ben, & Durrant-Whyte, Hugh (2006) Validation Gating for Non-Linear Non-Gaussian Target Tracking. In Proceedings 9th International Conference on Information Fusion, 2006, IEEE, Florence, Italy.

Direitos

Copyright 2006 IEEE

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Fonte

Faculty of Built Environment and Engineering; School of Engineering Systems

Palavras-Chave #090600 ELECTRICAL AND ELECTRONIC ENGINEERING #data association scheme #statistical property #nonlinear nonGaussian model #ellipsoidal validation gate #target tracking #Radar tracking #Robots
Tipo

Conference Paper