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On the Design of Lightweight and Secure Mutual Authentication System for Global Roaming in Resource-Limited Mobility Networks

机译:基于资源限制网络全球漫游的轻质和安全相互认证系统的设计

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摘要

A secure authentication protocol plays a crucial role in securing communications over wireless and mobile networks. Due to resource-limitations and the nature of the wireless channel, the global mobile networks are highly susceptible to various attacks. Recently, an efficient authentication system for global roaming has been proposed in the literature. In this article, we first show that the analyzed authentication system is vulnerable man-in-the-middle attack, replay attack and Denial-of-Service (DoS) attack, and it does not ensure untraceability and local password-verification process to identify wrong passwords. To fix these security flaws, we propose a more efficient and robust authentication system for roaming in mobility networks. We use the formal verification tools like ProVerif, Automated Validation of Internet Security Protocols and Applications (AVISPA) and Burrows-Abadi-Needham (BAN) logic to check the regularity of the authentication protocol. Moreover, we prove the secrecy of a session key through the formal security using the random oracle model, known as Real-Or-Random (ROR) model. Finally, a detailed performance evaluation proves that the security protocol not only provides a security strength, but also preserves the low computational overhead. Thus, the proposed authentication protocol is secure and computationally efficient as compared to other relevant schemes.
机译:安全认证协议在保护过度和移动网络的通信方面扮演至关重要的作用。由于资源限制和无线信道的性质,全球移动网络非常容易受到各种攻击的影响。最近,在文献中提出了一种用于全球漫游的有效认证系统。在本文中,我们首先表明分析的身份验证系统是易受攻击的中间攻击,重放攻击和拒绝服务(DOS)攻击,并不能确保不可取的性和本地密码验证过程来识别错误的密码。为了解决这些安全漏洞,我们提出了一种更有效和强大的认证系统,用于在移动网络中漫游。我们使用纤维纤维,自动验证,自动验证Internet安全协议和应用程序(Avispa)和Band-Abadi-Consureham(禁令)逻辑,以检查认证协议的规律性。此外,我们通过使用随机的Oracle模型来证明会话密钥的保密,称为真实或随机(ROR)模型。最后,详细的性能评估证明了安全协议不仅提供安全实力,而且还保留了低计算开销。因此,与其他相关方案相比,所提出的认证协议是安全和计算的高效。

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