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A Fractal-Based Authentication Technique Using Sierpinski Triangles in Smart Devices

机译:在智能设备中使用Sierpinski三角形的基于分形的身份验证技术

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摘要

The prevalence of smart devices in our day-to-day activities increases the potential threat to our secret information. To counter these threats like unauthorized access and misuse of phones, only authorized users should be able to access the device. Authentication mechanism provide a secure way to safeguard the physical resources as well the information that is processed. Text-based passwords are the most common technique used for the authentication of devices, however, they are vulnerable to a certain type of attacks such as brute force, smudge and shoulder surfing attacks. Graphical Passwords (GPs) were introduced as an alternative for the conventional text-based authentication to overcome the potential threats. GPs use pictures and have been implemented in smart devices and workstations. Psychological studies reveal that humans can recognize images much easier and quicker than numeric and alphanumeric passwords, which become the basis for creating GPs. In this paper a novel Fractal-Based Authentication Technique (FBAT) has been proposed by implementing a Sierpinski triangle. In the FBAT scheme, the probability of password guessing is low making system resilient against abovementioned threats. Increasing fractal level makes the system stronger and provides security against attacks like shoulder surfing.
机译:智能设备在我们日常活动中的普及增加了对我们秘密信息的潜在威胁。为了应对这些威胁,例如未经授权的访问和电话的滥用,只有授权的用户才能访问该设备。身份验证机制提供了一种安全的方式来保护物理资源以及所处理的信息。基于文本的密码是用于设备身份验证的最常用技术,但是,它们容易受到诸如蛮力,污迹和肩膀冲浪等特定类型的攻击。引入图形密码(GPs)作为常规基于文本的身份验证的替代方法,以克服潜在的威胁。 GP使用图片,并且已在智能设备和工作站中实现。心理研究表明,与数字密码和字母数字密码相比,人类可以更轻松,更快地识别图像,这成为创建GP的基础。在本文中,通过实现Sierpinski三角形,提出了一种新颖的基于分形的身份验证技术(FBAT)。在FBAT方案中,密码猜测的可能性很低,使系统可以抵抗上述威胁。分形级别的提高使系统更强大,并提供了抵御肩膀冲浪等攻击的安全性。

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