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Metrics for Reconfigurable Architectures Characterization: Remanence and Scalability.

, , , , , and . IPDPS, page 176. IEEE Computer Society, (2003)

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On optimal linear filtering for edge detection.. IEEE Trans. Image Process., 11 (7): 728-737 (2002)Mesh and Fat-Tree comparison for dynamically reconfigurable applications., , , and . ReCoSoC, volume 7551 of KIT Scientific Reports, page 157-160. KIT Scientific Publishing, (2010)Evaluation of edge detectors performances with a discrete expression of Canny's criteria., , and . ICIP, page 169-172. IEEE Computer Society, (1995)Reconfiguration Level Analysis of FFT / FIR Units in Wireless Telecommunication Systems., , , and . DSD, page 575-581. IEEE Computer Society, (2009)A Fault-Tolerant Layer for Dynamically Reconfigurable Multi-processor System-on-Chip., , and . ReConFig, page 284-289. IEEE Computer Society, (2009)Metrics for Reconfigurable Architectures Characterization: Remanence and Scalability., , , , , and . IPDPS, page 176. IEEE Computer Society, (2003)A Discrete Expression of Canny's Criteria for Step Edge Detector Performances Evaluation., and . IEEE Trans. Pattern Anal. Mach. Intell., 19 (11): 1199-1211 (1997)Design flexibility using fpga dynamical reconfiguration., , and . ICIP, page 2821-2824. IEEE, (2004)How to Use High Speed Reconfigurable FPGA for Real Time Image Processing?, , , and . CAMP, page 240-. IEEE Computer Society, (2000)Extension of Canny's Discrete Criteria to Second Derivative Filters Towards a Unified Approach.. ICIP (2), page 520-524. IEEE Computer Society, (1998)