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Efficiently Annotating Object Images with Absolute Size Information Using Mobile Devices
by
Mäder, Patrick
, Seeland, Marco
, Hofmann, Martin
in
Annotations
/ Calibration
/ Cameras
/ Electronic devices
/ Image analysis
/ Image classification
2019
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Efficiently Annotating Object Images with Absolute Size Information Using Mobile Devices
by
Mäder, Patrick
, Seeland, Marco
, Hofmann, Martin
in
Annotations
/ Calibration
/ Cameras
/ Electronic devices
/ Image analysis
/ Image classification
2019
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Efficiently Annotating Object Images with Absolute Size Information Using Mobile Devices
Journal Article
Efficiently Annotating Object Images with Absolute Size Information Using Mobile Devices
2019
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Overview
The projection of a real world scenery to a planar image sensor inherits the loss of information about the 3D structure as well as the absolute dimensions of the scene. For image analysis and object classification tasks, however, absolute size information can make results more accurate. Today, the creation of size annotated image datasets is effort intensive and typically requires measurement equipment not available to public image contributors. In this paper, we propose an effective annotation method that utilizes the camera within smart mobile devices to capture the missing size information along with the image. The approach builds on the fact that with a camera, calibrated to a specific object distance, lengths can be measured in the object’s plane. We use the camera’s minimum focus distance as calibration distance and propose an adaptive feature matching process for precise computation of the scale change between two images facilitating measurements on larger object distances. Eventually, the measured object is segmented and its size information is annotated for later analysis. A user study showed that humans are able to retrieve the calibration distance with a low variance. The proposed approach facilitates a measurement accuracy comparable to manual measurement with a ruler and outperforms state-of-the-art methods in terms of accuracy and repeatability. Consequently, the proposed method allows in-situ size annotation of objects in images without the need for additional equipment or an artificial reference object in the scene.
Publisher
Springer Nature B.V
Subject
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