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A Real-Time Expectation-Maximization Algorithm for Acquiring Multiplanar Maps of Indoor Environments With Mobile Robots

Sebastian Thrun, Christian Martín, Ying Liu, Dirk Hähnel, Rosemary Emery-Montemerlo, Deepayan Chakrabarti, Wolfram Burgard

Year
2004
Citations
138

Abstract

This paper presents a real-time algorithm for acquiring compact three-dimensional maps of indoor environments, using a mobile robot equipped with range and imaging sensors. Building on previous work on real-time pose estimation during mapping, our approach extends the popular expectation-maximization algorithm to multisurface models, and makes it amenable to real-time execution. Maps acquired by our algorithm consist of compact sets of textured polygons that can be visualized interactively. Experimental results obtained in corridor-type environments illustrate that compact and accurate maps can be acquired in real time and in a fully automated fashion.

Keywords

Computer scienceMobile robotRobotMaximizationAlgorithmRange (aeronautics)Artificial intelligenceComputer visionExpectation–maximization algorithmRanging

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