Keinert J, Haubelt C, Teich J (2007)
Publication Status: Published
Publication Type: Conference contribution, Conference Contribution
Publication year: 2007
Pages Range: 161-168
Article Number: 4285747
Conference Proceedings Title: Proceedings of the International Conference on Embedded Computer Systems: Architectures, Modeling and Simulation, Acoustics, Speech, and Signal Processing (IC-SAMOS VII)
ISBN: 9781424410583
DOI: 10.1109/ICSAMOS.2007.4285747
Embedded real-time image processing applications working on large images have to process and store huge amounts of data. Consequently the organization of the memory buffers and the precise determination of the required buffer sizes are critical steps for efficient system implementation. In this paper, we propose a new method, that permits the analysis to be performed automatically for local image processing algorithms. The latter ones are specified by help of the Windowed Synchronous Data Flow (WSDF) model, a multi-dimensional model of computation which has been especially designed to represent local image processing algorithms. This paper introduces a corresponding buffer organization leading to solutions comparable to hand-built designs concerning the required memory. Special care is taken, so that also large problems in terms of the image size can be analyzed. The applicability of our approach is demonstrated by help of a JPEG2000 decoder model. © 2007 IEEE.
APA:
Keinert, J., Haubelt, C., & Teich, J. (2007). Simulative buffer analysis of local image processing algorithms described by windowed synchronous data flow. In Proceedings of the International Conference on Embedded Computer Systems: Architectures, Modeling and Simulation, Acoustics, Speech, and Signal Processing (IC-SAMOS VII) (pp. 161-168). Samos, GR.
MLA:
Keinert, Joachim, Christian Haubelt, and Jürgen Teich. "Simulative buffer analysis of local image processing algorithms described by windowed synchronous data flow." Proceedings of the 2007 International Conference on Embedded Computer Systems: Architectures, Modeling and Simulation, IC-SAMOS 2007, Samos 2007. 161-168.
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