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A Multi-factor Biometric Authentication Scheme Using Attack Recognition and Key Generator Technique for Security Vulnerabilities to Withstand Attacks

机译:一种使用攻击识别和密钥发生器技术来承受攻击的多因素生物识别方案

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Security plays an important role in many authentication applications. Modern era information sharing is boundless and becoming much easier to access with the introduction of the Internet and the World Wide Web. Although this can be considered as a good point, issues such as privacy and data integrity arise due to the lack of control and authority. For this reason, the concept of data security was introduced. Data security can be categorized into two which are secrecy and authentication. In particular, this research was focused on the authentication of data security. There have been substantial research which discusses on multi-factor authentication scheme but most of those research do not entirely protect data against all types of attacks. Most current research only focuses on improving the security part of authentication while neglecting other important parts such as the accuracy and efficiency of the system. Current multifactor authentication schemes were simply not designed to have security, accuracy, and efficiency as their main focus. To overcome the above issue, this research will propose a new multi-factor authentication scheme which is capable to withstand external attacks which are known security vulnerabilities and attacks which are based on user behavior. On the other hand, the proposed scheme still needs to maintain an optimum level of accuracy and efficiency. From the result of the experiments, the proposed scheme was proven to be able to withstand the attacks. This is due to the implementation of the attack recognition and key generator technique together with the use of multi-factor in the proposed scheme.
机译:安全性在许多身份验证应用程序中发挥着重要作用。现代时代信息共享无限,并更容易访问互联网和万维网。虽然这可以被视为一个好点,但由于缺乏控制和权威,因此隐私和数据完整性等问题。因此,介绍了数据安全的概念。数据安全性可以分为两个是保密和身份验证的两个。特别是,该研究专注于数据安全的认证。已经大量研究讨论了多因素认证方案,但大多数研究都不会完全保护数据免受所有类型的攻击。大多数目前的研究仅侧重于改善认证的安全部分,同时忽略了其他重要部件,例如系统的准确性和效率。目前的Multifactor认证方案简单地设计用于具有安全性,准确性和效率作为主要焦点。为了克服上述问题,该研究将提出一种新的多因素认证方案,该方案能够承受基于用户行为的已知安全漏洞和攻击的外部攻击。另一方面,所提出的方案仍然需要保持最佳的准确性和效率水平。从实验结果来看,拟议的计划被证明能够承受攻击。这是由于在所提出的方案中使用多因素的攻击识别和关键发电机技术的实现。

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