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Sub-meter indoor localization in unmodified environments with inexpensive sensors

Martin Quigley, David Stavens, A. J. Coates, Sebastian Thrun

Year
2010
Citations
57

Abstract

The interpretation of uncertain sensor streams for localization is usually considered in the context of a robot. Increasingly, however, portable consumer electronic devices, such as smartphones, are equipped with sensors including WiFi radios, cameras, and inertial measurement units (IMUs). Many tasks typically associated with robots, such as localization, would be valuable to perform on such devices. In this paper, we present an approach for indoor localization exclusively using the low-cost sensors typically found on smartphones. Environment modification is not needed. We rigorously evaluate our method using ground truth acquired using a laser range scanner. Our evaluation includes overall accuracy and a comparison of the contribution of individual sensors. We find experimentally that fusion of multiple sensor modalities is necessary for optimal performance and demonstrate sub-meter localization accuracy.

Keywords

Computer scienceRobotContext (archaeology)Sensor fusionReal-time computingGround truthMetreInertial measurement unitArtificial intelligenceComputer vision

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