基于角色的生物识别访问控制在教育系统中的应用

49 Pub Date : 2023-06-30 DOI:10.56714/bjrs.49.1.8
M. K. Kabier, A. Yassin, Z. Abduljabbar, Songfeng Lu
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引用次数: 0

摘要

基于云计算的安全电子学习系统的目的是允许教师和学生随时随地访问他们的帐户。这些类型的系统确保其用户(教师和学生)真正在学校或研究所注册,以防止未经授权的用户访问系统的资源和组件。此外,大多数教育系统中使用的传统身份验证技术存在网络安全攻击和资源管理薄弱等问题。因此,一些学生可能急于利用这种系统的缺陷来作弊。在这种情况下,用户身份验证和最终用户监控更加困难。采用多因素自适应身份验证技术实现具有同步身份验证的系统。所提出的方案系统为电子学习环境提供了一种有效、经济、自适应人为干预的认证和监控解决方案。此外,我们的工作可以抵抗网络安全,并包含一些良好的指标,如相互认证,用户异常等。本文提出的方案系统采用基于非对称标量积保持加密(APSE)和指纹生物识别的双因素认证系统,以安全的方式管理和生成用户的帐户。与最先进的技术相比,我们的工作还在性能和安全复杂性之间取得了很好的平衡。因此,我们在1.69 ms的计算时间和1280比特的通信时间内取得了良好的效果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Role Based Access Control Using Biometric the in Educational System
The purpose of a secure e-learning system based on cloud computing is to allow instructors and students to access their accounts at any time and from anywhere. These types of systems work to ensure that their users (instructors and students) are truly enrolled in the school or institute to prevent unauthorized users from accessing the resources and components of the system. Furthermore, the traditional authentication techniques used in the majority of educational systems suffer from several issues, such as cyber security attacks and weak management of resources. So, some students could be eager to take advantage of such a system's flaw in an effort to cheat. User authentication and end-user monitoring are more difficult in this situation. Multifactor adaptive authentication techniques are used to implement a system with simultaneous authentication. The proposed scheme system offers an effective, affordable, and human intervention-adaptive authentication and monitoring solution for e-learning environments. Additionally, our work can resist cyber security and contains some good metrics like mutual authentication, user anomalies, and others. In this paper, the proposed scheme system uses a two-factor authentication system based on Asymmetric Scalar Product Preserving Encryption (APSE) and fingerprint biometrics for managing and generating a user's account in a secure way. Our work also achieves a good balance between performance and security complexity compared to the state-of-the-art. So, we achieve good results for 1.69 ms for computation and 1280 bits for communication.
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49
49
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