Title :
Interframe Coding of Feature Descriptors for Mobile Augmented Reality
Author :
Makar, M. ; Chandrasekhar, V. ; Tsai, Shauhyuarn Sean ; Chen, D. ; Girod, B.
Author_Institution :
Qualcomm Inc., San Diego, CA, USA
Abstract :
Streaming mobile augmented reality applications require both real-time recognition and tracking of objects of interest in a video sequence. Typically, local features are calculated from the gradients of a canonical patch around a keypoint in individual video frames. In this paper, we propose a temporally coherent keypoint detector and design efficient interframe predictive coding techniques for canonical patches, feature descriptors, and keypoint locations. In the proposed system, we strive to transmit each patch or its equivalent feature descriptor with as few bits as possible by modifying a previously transmitted patch or descriptor. Our solution enables server-based mobile augmented reality where a continuous stream of salient information, sufficient for image-based retrieval, and object localization, is sent at a bit-rate that is practical for today´s wireless links and less than one-tenth of the bit-rate needed to stream the compressed video to the server.
Keywords :
augmented reality; feature extraction; image matching; image retrieval; image sequences; mobile computing; object detection; object recognition; video coding; canonical patch; compressed video; feature descriptors; image-based retrieval; interframe predictive coding techniques; keypoint locations; object localization; object tracking; real-time object recognition; salient information; server-based mobile augmented reality; temporally coherent keypoint detector; video frames; video sequence; Augmented reality; Detectors; Encoding; Feature extraction; Image coding; Image matching; Streaming media; Augmented reality; canonical patch coding; descriptor coding; image matching;
Journal_Title :
Image Processing, IEEE Transactions on
DOI :
10.1109/TIP.2014.2331136