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Bearing-only localization using geometrically constrained optimization

journal contribution
posted on 2009-01-01, 00:00 authored by Adrian Bishop, B Anderson, B Fidan, Pubudu PathiranaPubudu Pathirana, G Mao
We examine the problem of optimal bearing-only localization of a single target using synchronous measurements from multiple sensors. We approach the problem by forming geometric relationships between the measured parameters and their corresponding errors in the relevant emitter localization scenarios. Specifically, we derive a geometric constraint equation on the measurement errors in such a scenario. Using this constraint, we formulate the localization task as a constrained optimization problem that can be performed on the measurements in order to provide the optimal values such that the solution is consistent with the underlying geometry. We illustrate and confirm the advantages of our approach through simulation, offering detailed comparison with traditional maximum likelihood (TML) estimation.

History

Journal

IEEE transactions on aerospace and electronic systems

Volume

45

Issue

1

Pagination

308 - 320

Publisher

IEEE

Location

New York, N.Y.

ISSN

0018-9251

eISSN

1557-9603

Language

eng

Publication classification

C1 Refereed article in a scholarly journal

Copyright notice

2009, IEEE