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A Modular Approach for Query Spotting in Document Images and Its Optimization Using Genetic Algorithms

  • Houssem Chatbri
  • , Paul H Kwan
  • , Keisuke Kameyama

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

2 Citations (Scopus)

Abstract

Query spotting in document images is a subclass of Content-Based Image Retrieval (CBIR) algorithms concerned with detecting occurrences of a query in a document image. Due to noise and complexity of document images, spotting can be a challenging task and easily prone to false positives and partially incorrect matches, thereby reducing the overall precision of the algorithm. A robust and accurate spotting algorithm is essential to our current research on sketch-based retrieval of digitized lecture materials. We have recently proposed a modular spotting algorithm in [1]. Compared to existing methods, our algorithm is both application-independent and segmentation-free. However, it faces the same challenges of noise and complexity of images. In this paper, inspired by our earlier research on optimizing parameter settings for CBIR using an evolutionary algorithm [2][3], we introduce a Genetic Algorithm-based optimization step in our spotting algorithm to improve each spotting result. Experiments using an image dataset of journal pages reveal promising performance, in that the precision is significantly improved but without compromising the recall of the overall spotting result.
Original languageEnglish
Title of host publicationProceedings of the 2014 IEEE Congress on Evolutionary Computation (CEC)
Place of PublicationLos Alamitos, United States of America
PublisherInstitute of Electrical and Electronics Engineers (IEEE)
Pages2085-2092
ISBN (Print)9781479914883
DOIs
Publication statusPublished - 2014
EventCEC 2014: IEEE Congress on Evolutionary Computation - Beijing, China
Duration: 6 Jul 201411 Jul 2014

Conference

ConferenceCEC 2014: IEEE Congress on Evolutionary Computation
CityBeijing, China
Period6/07/1411/07/14

Keywords

  • Neural, Evolutionary and Fuzzy Computation
  • Computer Vision
  • Image Processing

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