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SAMAKA: Secure and Anonymous Mutual Authentication and Key Agreement Scheme for Wireless Body Area Networks

机译:Samaka:无线体积网络安全和匿名的相互认证和密钥协议计划

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摘要

The burgeoning advances in wireless communications, healthcare facilities, and sensor technologies bring a lot of transformation in businesses, the global economy, and convenience to people’s life. To this, Wireless Body Area Networks (WBAN) has transpired as a low-cost, simple and effective solution for Smart E-Healthcare Systems. However, the mobility and open communication channel pose a significant risk of unapproved access, leakage of sensitive E-health data, and various attacks from the adversary, which remarkably impacts the large-scale adoption of the technology. To deal with such issues related to security and privacy in WBANs, many authentication schemes were suggested by the researchers in the past few years claiming to be secure, privacy-preserving, and efficient. Unfortunately, the existing schemes present security and privacy shortcomings which bring about the issues such as threats from adversaries and abuse of services. In this paper, we have propounded a secure and anonymous mutual authentication scheme for WBANs (SAMAKA). In particular, SAMAKA preserves all the desired security features and guards from various security attacks from an adversary. Besides, the formal security proof for SAMAKA is given using BAN Logic and AVISPA. Moreover, SAMAKA is proved to be provably secure in the RoR Model. More importantly, a detailed informal security analysis demonstrates the robustness of SAMAKA against well-known security attacks. Finally, a comparative performance analysis reveals that SAMAKA achieves superior performance and shows promising results while providing more robust security and privacy.
机译:无线通信,医疗保健设施和传感器技术的蓬勃发展在企业,全球经济方面带来了大量的转型,以及人们的生活。为此,无线体积网络(WBAN)已将智能电子医疗系统的低成本,简单且有效的解决方案转发。然而,流动性和开放式通信渠道构成了未批准的访问,敏感的电子健康数据的泄漏以及来自对手的各种攻击的重大风险,这显着影响了该技术的大规模采用。要处理与WBAN中的安全和隐私有关的这些问题,研究人员在过去几年中提出了许多认证计划,声称是安全的,隐私保存和高效的。不幸的是,现有计划目前提供安全和隐私缺点,这些缺点带来了来自对手和滥用服务的威胁等问题。在本文中,我们已经为WBANS(Samaka)提出了一种安全且匿名的相互认证方案。特别是,Samaka保留了来自对手的各种安全攻击的所有所需的安全功能和防护。此外,使用禁令逻辑和Avispa给出了Samaka的正式安全证据。此外,Samaka被证明在ROR模型中可被证明是可证明的。更重要的是,详细的非正式安全分析表明了Samaka对众所周知的安全攻击的鲁棒性。最后,比较绩效分析表明,Samaka达到了卓越的性能,并显示了有希望的结果,同时提供更强大的安全和隐私。

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