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Distributed Adaptive Binary Quantization for Fast Nearest Neighbor Search

  • Xianglong Liu
  • , Zhujin Li
  • , Cheng Deng*
  • , Dacheng Tao
  • *Corresponding author for this work
  • Beihang University
  • Xidian University
  • The University of Sydney

Research output: Contribution to journalArticlepeer-review

Abstract

Hashing has been proved an attractive technique for fast nearest neighbor search over big data. Compared with the projection based hashing methods, prototype-based ones own stronger power to generate discriminative binary codes for the data with complex intrinsic structure. However, existing prototype-based methods, such as spherical hashing and K-means hashing, still suffer from the ineffective coding that utilizes the complete binary codes in a hypercube. To address this problem, we propose an adaptive binary quantization (ABQ) method that learns a discriminative hash function with prototypes associated with small unique binary codes. Our alternating optimization adaptively discovers the prototype set and the code set of a varying size in an efficient way, which together robustly approximate the data relations. Our method can be naturally generalized to the product space for long hash codes, and enjoys the fast training linear to the number of the training data. We further devise a distributed framework for the large-scale learning, which can significantly speed up the training of ABQ in the distributed environment that has been widely deployed in many areas nowadays. The extensive experiments on four large-scale (up to 80 million) data sets demonstrate that our method significantly outperforms state-of-the-art hashing methods, with up to 58.84% performance gains relatively.

Original languageEnglish
Article number7990335
Pages (from-to)5324-5336
Number of pages13
JournalIEEE Transactions on Image Processing
Volume26
Issue number11
DOIs
StatePublished - Nov 2017

Keywords

  • Locality-sensitive hashing
  • binary quantization
  • distributed learning
  • nearest neighbor search
  • product quantization

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