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首页> 外文期刊>International journal of communication systems >ACMHS: Efficient access control for mobile health care system
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ACMHS: Efficient access control for mobile health care system

机译:ACMHS:移动医疗系统的有效访问控制

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摘要

To provide privacy protection in mobile health care system, medical users typically encrypt their personal health information before publishing it to the health care center. And other medical users download, decrypt, and process it using an access control protocol. However, current access control protocols are mainly focusing the privacy of personal health information and lacking the protection for medical users' real identities, leading to a variety of security issues. At the same time, current access control protocols for mobile health care systems are usually based on bilinear map, resulting in high computation costs. Observing the above issues, we introduce a novel access control protocol with privacy-preserving called Access Control for Mobile Healthcare System (ACMHS). Similar to protocols of this field, ACMHS can provide privacy protection for mobile health care systems. However, different from other well-known approaches, ACMHS uses pseudonyms instead of real identities, which can provide privacy protection for medical users' real identities. Moreover, to reduce the computation cost of bilinear map, we introduce the algebraic signature to ACMHS and design a novel access control protocol, which is much more efficient than current bilinear-map-based protocols. By doing so, ACMHS can achieve high efficiency while still enjoying required security requirements. Experimental results show that ACMHS is feasible for real-world applications.
机译:为了在移动医疗系统中提供隐私保护,医疗用户通常在将个人健康信息发布到医疗中心之前对其进行加密。其他医疗用户使用访问控制协议下载,解密和处理它。但是,当前的访问控制协议主要关注个人健康信息的隐私,并且缺乏对医疗用户真实身份的保护,从而导致各种安全问题。同时,当前用于移动医疗系统的访问控制协议通常基于双线性图,从而导致高计算成本。针对上述问题,我们介绍了一种具有隐私保护功能的新型访问控制协议,称为移动医疗系统访问控制(ACMHS)。类似于该领域的协议,ACMHS可以为移动医疗系统提供隐私保护。但是,与其他众所周知的方法不同,ACMHS使用假名代替真实身份,这可以为医疗用户的真实身份提供隐私保护。此外,为了降低双线性图的计算成本,我们将代数签名引入ACMHS,并设计了一种新颖的访问控制协议,该协议比当前基于双线性图的协议更有效。这样一来,ACMHS可以在保持所需安全性要求的同时实现高效率。实验结果表明,ACMHS对于实际应用是可行的。

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