BioSecure Signature Evaluation Campaign (ESRA'2011): evaluating systems on quality-based categories of skilled forgeries

N. Houmani, S. Garcia-Salicetti, B. Dorizzi, J. Filho, J. Canuto, M. Andrade, Yu Qiao, Xingxing Wang, T. Scheidat, A. Makrushin, D. Muramatsu, J. Putz-Leszczynska, Michal Kudelski, M. Faúndez-Zanuy, J. M. Pascual-Gaspar, Valentín Cardeñoso-Payo, C. Vivaracho-Pascual, Enrique Argones-Rúa, J. Alba-Castro, A. Kholmatov, B. Yanikoglu
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引用次数: 26

Abstract

In this paper, we present the main results of the BioSecure Signature Evaluation Campaign (ESRA'2011). The objective of ESRA'2011 is to evaluate through two different tasks the resistance of different online signature systems to skilled forgeries categorized automatically according to their quality. Task 1 aims at studying with only coordinate time functions the influence of acquisition conditions (digitizing tablet vs. PDA) on systems' performance. The two BioSecure Data Sets DS2 and DS3 make this possible, since they contain data from the same 382 people, acquired respectively on a digitizer and on a PDA. Task 2 then aims at assessing the contribution of the five time functions available on a digitizer (coordinates, pressure, pen inclination) on systems' resistance to different qualities of skilled forgeries. Results of the 13 systems involved in this competition are reported and analyzed for both tasks in this paper. We observe that the best system in terms of performance on forgeries of “bad” quality is not necessarily the most resistant to an increased quality of skilled forgeries. Also, we note that mobile conditions are still threatening independently of the quality of forgeries. Finally, when adding pen inclination time functions to pressure and coordinates, we find that the gap between systems in terms of performance is wider than when only pen coordinates and pressure are considered.
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生物安全签名评估活动(ESRA'2011):评估基于质量的熟练伪造类别的系统
在本文中,我们介绍了生物安全签名评估活动(ESRA'2011)的主要结果。ESRA'2011的目标是通过两个不同的任务来评估不同的在线签名系统对根据其质量自动分类的熟练伪造品的抵抗力。任务1的目的是研究仅在坐标时间函数下获取条件(数字化平板电脑与PDA)对系统性能的影响。两个生物安全数据集DS2和DS3使这成为可能,因为它们包含来自相同的382人的数据,分别在数字化仪和PDA上获得。然后,任务2旨在评估数字化仪上可用的五个时间函数(坐标,压力,笔倾角)对系统抵抗不同质量的熟练伪造的贡献。本文报告并分析了这两项任务中涉及的13个系统的结果。我们观察到,就“坏”伪造品的性能而言,最好的系统不一定是最能抵抗技术伪造品质量提高的系统。此外,我们注意到,移动条件仍然威胁着伪造品的质量。最后,当将笔倾斜时间函数加入压力和坐标时,我们发现系统之间在性能方面的差距比只考虑笔坐标和压力时更大。
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