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An experimental comparison of localization methods continued

J.-S. Gutmann, D. Fox

Year
2003
Citations
196

Abstract

Localization is one of the fundamental problems in mobile robot navigation. Past experiments have shown that, in general, grid-based Markov localization is more robust than Kalman filtering while the latter can be more accurate than the former Recently new methods for localization employing particle filters have become popular. In this paper, we compare different localization methods using Kalman filtering, grid-based Markov localization, Monte Carlo Localization (MCL), and combinations thereof. We give experimental evidence that a combination of Markov localization and Kalman filtering as well as a variant of MCL outperform the other methods in terms of accuracy, robustness, and time needed for recovering from manual robot displacement, while requiring only few computational resources.

Keywords

Robustness (evolution)Kalman filterMonte Carlo localizationParticle filterComputer scienceMobile robotGridExtended Kalman filterArtificial intelligenceMarkov chain

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