SM-DTW: Stability Modulated Dynamic Time Warping for signature verification

Fuente: arXiv
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Autori principali: Parziale, Antonio, Diaz, Moises, Ferrer, Miguel A., Marcelli, Angelo
Natura: Preprint
Pubblicazione: 2024
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author Parziale, Antonio
Diaz, Moises
Ferrer, Miguel A.
Marcelli, Angelo
author_facet Parziale, Antonio
Diaz, Moises
Ferrer, Miguel A.
Marcelli, Angelo
contents Building upon findings in computational model of handwriting learning and execution, we introduce the concept of stability to explain the difference between the actual movements performed during multiple execution of the subject's signature, and conjecture that the most stable parts of the signature should play a paramount role in evaluating the similarity between a questioned signature and the reference ones during signature verification. We then introduce the Stability Modulated Dynamic Time Warping algorithm for incorporating the stability regions, i.e. the most similar parts between two signatures, into the distance measure between a pair of signatures computed by the Dynamic Time Warping for signature verification. Experiments were conducted on two datasets largely adopted for performance evaluation. Experimental results show that the proposed algorithm improves the performance of the baseline system and compares favourably with other top performing signature verification systems.
format Preprint
id arxiv_https___arxiv_org_abs_2405_11978
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle SM-DTW: Stability Modulated Dynamic Time Warping for signature verification
Parziale, Antonio
Diaz, Moises
Ferrer, Miguel A.
Marcelli, Angelo
Computer Vision and Pattern Recognition
Artificial Intelligence
Building upon findings in computational model of handwriting learning and execution, we introduce the concept of stability to explain the difference between the actual movements performed during multiple execution of the subject's signature, and conjecture that the most stable parts of the signature should play a paramount role in evaluating the similarity between a questioned signature and the reference ones during signature verification. We then introduce the Stability Modulated Dynamic Time Warping algorithm for incorporating the stability regions, i.e. the most similar parts between two signatures, into the distance measure between a pair of signatures computed by the Dynamic Time Warping for signature verification. Experiments were conducted on two datasets largely adopted for performance evaluation. Experimental results show that the proposed algorithm improves the performance of the baseline system and compares favourably with other top performing signature verification systems.
title SM-DTW: Stability Modulated Dynamic Time Warping for signature verification
topic Computer Vision and Pattern Recognition
Artificial Intelligence
url https://arxiv.org/abs/2405.11978