Ponencia
Hardware Implementation of a Biometric Recognition Algorithm based on In-Air Signature
Autor/es | Arjona, Rosario
Romero Moreno, Rocío Baturone Castillo, María Iluminada |
Departamento | Universidad de Sevilla. Departamento de Electrónica y Electromagnetismo |
Fecha de publicación | 2015-06-01 |
Fecha de depósito | 2024-01-08 |
Publicado en |
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ISBN/ISSN | 979-10-92279-06-1 |
Resumen | This paper presents the design of a prototype for a wearable device that implements a recognition system based on in-air signature into a FPGA that receives data from a 3-axis accelerometer. The Dynamic Time Warping (DTW) ... This paper presents the design of a prototype for a wearable device that implements a recognition system based on in-air signature into a FPGA that receives data from a 3-axis accelerometer. The Dynamic Time Warping (DTW) algorithm has been analyzed and simplified to reduce the complexity of the hardware architecture that implements the matching in the FPGA. Despite simplification, accuracy of the recognition is maintained and the Equal Error Rate, EER, is 4.21% considering a public database with 120 in-air signatures. A prototype based on a Spartan 6 LX9 microboard connected to an ultralow power ADXL345 accelerometer has been developed. Performance of the prototype working with in-air signatures has been verified with a script developed in Matlab-Simulink. The execution time for matching is 22 ms and the estimated average power consumption of the matching in the FPGA is 26 mW. |
Agencias financiadoras | Ministerio de Economía y Competitividad (MINECO). España European Commission (EC). Fondo Europeo de Desarrollo Regional (FEDER) |
Identificador del proyecto | TEC2011-24319
IPT2012-0695-390000 |
Cita | Arjona, R., Romero Moreno, R. y Baturone Castillo, M.I. (2014). Hardware Implementation of a Biometric Recognition Algorithm based on In-Air Signature. En Proceedings of the 2014 Conference on Design and Architectures for Signal and Image Processing Madrid, España: IEEE. |
Ficheros | Tamaño | Formato | Ver | Descripción |
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DASIP_2014.pdf | 236.4Kb | [PDF] | Ver/ | Versión aceptada |
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