【24h】

Multiresolution analysis and geometric measures for biometric identification systems

机译:生物识别系统的多分辨率分析和几何度量

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

The authors describe here their work in two different biometric techniques: iris pattern and hand geometry. These two techniques require very different processing algorithms, achieving good results for two different security environments. While iris pattern is a high cost and very high reliability technique, hand geometry is low cost, highly accepted and provides medium/high security. Adaptive techniques have been studied for increasing hand geometry reliability while new processing algorithms, such as symmetric real Gabor filters, have been used to decrease the computational cost involved in iris pattern recognition. The target of adapting these biometric techniques for small embedded systems, comes with the design of new Biometric Systems, where the user's template is stored in a portable storage media. This media can also be used to store some user's sensible information, such as his health record, and new access conditions are designed to avoid the reading of this data unless the biometric verification has been performed. The media chosen has been a smart card, and a new requirement is established: biometric verification (hand or iris) should be performed inside the smart card, in order to not be able to extract the user's template from the card.
机译:作者在这里用两种不同的生物特征识别技术描述他们的工作:虹膜图案和手部几何形状。这两种技术需要非常不同的处理算法,从而在两种不同的安全环境中均能达到良好的效果。尽管虹膜图案是一种高成本和非常高可靠性的技术,但手部几何形状却是低成本,高接受度并提供中等/高安全性。为了提高手部几何形状的可靠性,已经研究了自适应技术,而新的处理算法(例如对称真实Gabor滤波器)已被用于减少虹膜模式识别所涉及的计算成本。将这些生物识别技术应用于小型嵌入式系统的目标是通过新的生物识别系统的设计实现,在该系统中,用户模板存储在便携式存储介质中。该媒体还可以用于存储某些用户的敏感信息(例如他的健康记录),并且新的访问条件旨在避免读取此数据,除非执行了生物特征验证。选择的介质是智能卡,并且建立了新的要求:应该在智能卡内部执行生物特征验证(手或虹膜),以便无法从卡中提取用户模板。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号