首页> 外文会议>Computational Intelligence in Biometrics: Theory, Algorithms, and Applications, 2009. CIB 2009 >Secure and simplified access to home appliances using Iris recognition
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Secure and simplified access to home appliances using Iris recognition

机译:使用虹膜识别功能安全,简化地访问家用电器

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摘要

Moving towards an dasiaalways-onpsila, dasiamobilepsila and technology driven lifestyle, people are demanding greater technical triumph to make life more exciting, convenient and trouble-free. Automation at home has already started catering to this growing need. Another major motivating factor for this is the prospect of higher energy efficiency, greater control on home from remote locations and the decreasing cost of network-controlled home appliances. In this paper, we propose a novel scheme for accessing home appliances over the Internet using secure communication channel offered by secure socket layer (SSL) with mandatory certificate verification, perform user authentication using iris image, and then hash the biometric data to provide an impregnable three-factor security to the biometric data as well as user instructions while in transit between the user terminal and the home appliance. Additionally, we propose the use of a single authentication server for multiple residences, that would store users' sensitive biometric data, perform authentication, access control and quality of service, thereby reducing cost, effort, user dependability and improve security, acceptability and user-friendliness of home automation universally, together with SIP and UPnP protocols. The proposed approach proves to be more effective because of its well integrated three levels of security, less equal error, very small hash code used for authentication, lower computational complexity while matching, and thus, very fast response.
机译:走向dasiaalways-onpsila,dasiamobilepsila和以技术为主导的生活方式,人们要求更大的技术胜利,以使生活更加令人兴奋,便捷和无障碍。家庭自动化已经开始满足这种不断增长的需求。另一个主要的推动因素是更高的能源效率,对偏远地区的家庭进行更好的控制以及网络控制的家用电器成本降低的前景。在本文中,我们提出了一种新颖的方案,该方案用于使用安全套接字层(SSL)提供的安全通信通道通过强制性证书验证来通过Internet访问家用电器,使用虹膜图像执行用户身份验证,然后对生物特征数据进行哈希处理以提供不可渗透的信息。在用户终端和家用电器之间传输时,生物特征数据以及用户指令的三要素安全性。此外,我们建议对多个住所使用单个身份验证服务器,该服务器将存储用户的敏感生物特征数据,执行身份验证,访问控制和服务质量,从而降低成本,工作量,用户可靠性并提高安全性,可接受性和用户与SIP和UPnP协议一起,普遍适用于家庭自动化。所提出的方法被证明是更有效的,因为它具有高度集成的三个安全级别,更少的相等错误,用于身份验证的非常小的哈希码,匹配时较低的计算复杂度以及因此非常快的响应。

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