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Object Localization with Global and Local Context Kernels
Author(s) -
Matthew B. Blaschko,
Christoph H. Lampert
Publication year - 2009
Publication title -
mpg.pure (max planck society)
Language(s) - English
Resource type - Conference proceedings
DOI - 10.5244/c.23.63
Subject(s) - computer science , artificial intelligence , kernel (algebra) , inference , pascal (unit) , kernel method , context (archaeology) , discriminant , machine learning , pattern recognition (psychology) , spatial contextual awareness , representation (politics) , computer vision , mathematics , support vector machine , paleontology , combinatorics , politics , political science , law , biology , programming language
Recent research has shown that the use of contextual cues significantly improves performance in sliding window type localization systems. In this work, we propose a method that incorporates both global and local context information through appropriately defined kernel functions. In particular, we make use of a weighted combination of kernels defined over local spatial regions, as well as a global context kernel. The relative importance of the context contributions is learned automatically, and the resulting discriminant function is of a form such that localization at test time can be solved efficiently using a branch and bound optimization scheme. By specifying context directly with a kernel learning approach, we achieve high localization accuracy with a simple and efficient representation. This is in contrast to other systems that incorporate context for which expensive inference needs to be done at test time. We show experimentally on the PASCAL VOC datasets that the inclusion of context can significantly improve localization performance, provided the relative contributions of context cues are learned appropriately.

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