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A Pipelined Reconfigurable Architecture for Visual-Based Navigation.

, , , and . EUROMICRO, page 1071-1074. IEEE Computer Society, (1999)

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On the Advantages of Asynchronous Pixel Reading and Processing for High-Speed Motion Estimation., , , and . ISVC (1), volume 5358 of Lecture Notes in Computer Science, page 205-215. Springer, (2008)A Pipelined Reconfigurable Architecture for Visual-Based Navigation., , , and . EUROMICRO, page 1071-1074. IEEE Computer Society, (1999)Selective Change-Driven Image Processing: A Speeding-Up Strategy., , , and . CIARP, volume 5856 of Lecture Notes in Computer Science, page 37-44. Springer, (2009)High-speed Motion Detection using Event-based Sensing., , and . VISIGRAPP (4: VISAPP), page 246-253. SciTePress, (2017)Feature Extraction and Correlation for Time-to-Impact Segmentation Using Log-Polar Images., , and . ICCSA (4), volume 3046 of Lecture Notes in Computer Science, page 887-895. Springer, (2004)Change-driven Image Architecture on FPGA with adaptive threshold for Optical-Flow Computation., , , and . ReConFig, page 237-243. IEEE Computer Society, (2006)Synthesizing on a Reconfigurable Chip an Autonomous Robot Image Processing System., and . FPL, volume 2778 of Lecture Notes in Computer Science, page 458-467. Springer, (2003)Selective Change Driven Vision Sensor With Continuous-Time Logarithmic Photoreceptor and Winner-Take-All Circuit for Pixel Selection., , and . IEEE J. Solid State Circuits, 50 (3): 786-798 (2015)Detecting Motion Independent of the Camera Movement Through a Log-Polar Differential Approach., , , and . CAIP, volume 1296 of Lecture Notes in Computer Science, page 702-709. Springer, (1997)A new foveated space-variant camera for robotic applications., , , , and . ICECS, page 680-683. IEEE, (1996)