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Efficient biometric and password based mutual authentication for consumer USB mass storage devices

机译:消费类USB大容量存储设备的高效基于生物特征和密码的相互认证

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摘要

A Universal Serial Bus (USB) Mass Storage Device (MSD), often termed a USB flash drive, is ubiquitously used to store important information in unencrypted binary format. This low cost consumer device is incredibly popular due to its size, large storage capacity and relatively high transfer speed. However, if the device is lost or stolen an unauthorized person can easily retrieve all the information. Therefore, it is advantageous in many applications to provide security protection so that only authorized users can access the stored information. In order to provide security protection for a USB MSD, this paper proposes a session key agreement protocol after secure user authentication. The main aim of this protocol is to establish session key negotiation through which all the information retrieved, stored and transferred to the USB MSD is encrypted. This paper not only contributes an efficient protocol, but also does not suffer from the forgery attack and the password guessing attack as compared to other protocols in the literature. This paper analyses the security of the proposed protocol through a formal analysis which proves that the information is stored confidentially and is protected offering strong resilience to relevant security attacks. The computational cost and communication cost of the proposed scheme is analyzed and compared to related work to show that the proposed scheme has an improved tradeoff for computational cost, communication cost and security.
机译:通用串行总线(USB)大容量存储设备(MSD)(通常称为USB闪存驱动器)被广泛用于以未加密的二进制格式存储重要信息。这种低成本的消费类设备因其尺寸,大存储容量和相对较高的传输速度而非常受欢迎。但是,如果设备丢失或被盗,未经授权的人可以轻松检索所有信息。因此,在许多应用中提供安全保护是有利的,使得只有授权用户才能访问所存储的信息。为了给USB MSD提供安全保护,本文提出了一种经过安全用户认证的会话密钥协商协议。该协议的主要目的是建立会话密钥协商,通过该会话密钥协商,对检索,存储和传输到USB MSD的所有信息进行加密。与文献中的其他协议相比,本文不仅提供了一种有效的协议,而且没有遭受伪造攻击和密码猜测攻击。本文通过形式化分析来分析所提出协议的安全性,证明该信息是秘密存储的,并且受到保护,从而为相关的安全攻击提供了强大的弹性。对所提方案的计算成本和通信成本进行了分析,并与相关工作进行了比较,表明所提方案在计算成本,通信成本和安全性方面具有较好的折衷。

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