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FPGA Implementation of the Ridge Line Following Fingerprint Algorithm.

, , , , and . FPL, volume 3203 of Lecture Notes in Computer Science, page 1087-1089. Springer, (2004)

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Custom-Made Design of a Digital PID Control System., , and . ICASSP (3), page 1020-1023. IEEE, (2006)Trigonometric Computing Embedded in a Dynamically Reconfigurable CORDIC System-on-Chip., , , and . ARC, volume 3985 of Lecture Notes in Computer Science, page 122-127. Springer, (2006)Run-time self-reconfigurable 2D convolver for adaptive image processing., , and . Microelectron. J., 42 (1): 204-217 (2011)Deployment of Run-Time Reconfigurable Hardware Coprocessors Into Compute-Intensive Embedded Applications., , , and . J. Signal Process. Syst., 66 (2): 191-221 (2012)Design of a hardware accelerator for fingerprint alignment., , , and . FPL, page 485-488. IEEE, (2007)Dynamically Reconfigurable CORDIC Coprocessor for Trigonometric., , , and . ARCS Workshops, volume P-81 of LNI, page 254-263. GI, (2006)Real-time embedded systems powered by FPGA dynamic partial self-reconfiguration: a case study oriented to biometric recognition applications., , , and . J. Real Time Image Process., 8 (3): 229-251 (2013)FPGA Implementation of the Ridge Line Following Fingerprint Algorithm., , , , and . FPL, volume 3203 of Lecture Notes in Computer Science, page 1087-1089. Springer, (2004)Hardware-Software Co-design of a Dynamically Reconfigurable FPGA-based Fuzzy Logic Controller., , and . ICECS, page 1228-1231. IEEE, (2006)Precise real-time monitoring of time-critical flows., , , , , , , , , and . CoNEXT, page 489-490. ACM, (2021)