JOURNAL ARTICLE

Fast large-scale object retrieval with binary quantization

Shifu ZhouDan ZengWei ShenZhijiang ZhangQi Tian

Year: 2015 Journal:   Journal of Electronic Imaging Vol: 24 (6)Pages: 063018-063018   Publisher: SPIE

Abstract

The objective of large-scale object retrieval systems is to search for images that contain the target object in an image database. Where state-of-the-art approaches rely on global image representations to conduct searches, we consider many boxes per image as candidates to search locally in a picture. In this paper, a feature quantization algorithm called binary quantization is proposed. In binary quantization, a scale-invariant feature transform (SIFT) feature is quantized into a descriptive and discriminative bit-vector, which allows itself to adapt to the classic inverted file structure for box indexing. The inverted file, which stores the bit-vector and box ID where the SIFT feature is located inside, is compact and can be loaded into the main memory for efficient box indexing. We evaluate our approach on available object retrieval datasets. Experimental results demonstrate that the proposed approach is fast and achieves excellent search quality. Therefore, the proposed approach is an improvement over state-of-the-art approaches for object retrieval.

Keywords:
Scale-invariant feature transform Image retrieval Computer science Search engine indexing Artificial intelligence Quantization (signal processing) Vector quantization Pattern recognition (psychology) Inverted index Discriminative model Visual Word Binary number Feature (linguistics) Computer vision Feature extraction Mathematics Image (mathematics)

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Citation History

Topics

Advanced Image and Video Retrieval Techniques
Physical Sciences →  Computer Science →  Computer Vision and Pattern Recognition
Image Retrieval and Classification Techniques
Physical Sciences →  Computer Science →  Computer Vision and Pattern Recognition
Remote-Sensing Image Classification
Physical Sciences →  Engineering →  Media Technology
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