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Most Influential CVPR 2008 Paper · 2026-03 edition

Action MACH A Spatio-temporal Maximum Average Correlation Height Filter For Action Recognition

M. D. Rodriguez; J. Ahmed and M. Shah

Venue
IEEE Conference on Computer Vision and Pattern Recognition (CVPR) 2008
Recognition
Most Influential CVPR 2008 Paper (Rank No. 6)
Edition
2026-03
Impact factor
8
Certificate ID
8aec21fe50b862e6

Abstract

In this paper we introduce a template-based method for recognizing human actions called action MACH. Our approach is based on a maximum average correlation height (MACH) filter. A common limitation of template-based methods is their inability to generate a single template using a collection of examples. MACH is capable of capturing intra-class variability by synthesizing a single Action MACH filter for a given action class. We generalize the traditional MACH filter to video (3D spatiotemporal volume), and vector valued data. By analyzing the response of the filter in the frequency domain, we avoid the high computational cost commonly incurred in template-based approaches. Vector valued data is analyzed using the Clifford Fourier transform, a generalization of the Fourier transform intended for both scalar and vector-valued data. Finally, we perform an extensive set of experiments and compare our method with some of the most recent approaches in the field by using publicly available datasets, and two new annotated human action datasets which include actions performed in classic feature films and sports broadcast television.

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