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Quantum Key Distribution and Cryptography Mechanisms for Cloud Data Security

机译:用于云数据安全的量子密钥分发和密码学机制

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Providing security to the Personal Health Record (PHR) stored in cloud is an important and critical task in recent days. Different cloud security mechanisms are developed in the traditional works for this purpose mainly focused on authentication based security. This paper aims to develop a novel key distribution and encryption mechanism namely, Quantum Key Distribution and Non-Abelian Encryption (QKD-NAE) for secure storage and access of PHR. In cloud environment, the hospital admin and user uses a quantum key for data access, where the users may be a doctor, patient, nurse, physicians, and accountants. The hospital admin uses the Diffie Hellman (DH) algorithm for secure secret generation, and every user separates the secret based on their designation. Then, the admin splits the input data into attributes and encrypts it by using NAE. When the user sends the request to the service provider, the access control policy maintained by the Third Party Auditor (TPA) is verified for data access. The valid user receives the data from multiple servers based on the access control policy created by the DH algorithm. The major advantage of this work is that the unauthorized users are not able to know the quantum key and the generated secret which leads to increased data security. The experimental results evaluate the performance of the existing and proposed techniques with respect to different measures.
机译:近来,为存储在云中的个人健康记录(PHR)提供安全性是一项重要且至关重要的任务。为此,传统作品中开发了不同的云安全性机制,主要针对基于身份验证的安全性。本文旨在开发一种新颖的密钥分发和加密机制,即量子密钥分发和非阿贝尔加密(QKD-NAE),用于安全存储和访问PHR。在云环境中,医院管理员和用户使用量子密钥进行数据访问,其中用户可以是医生,患者,护士,医生和会计师。医院管理员使用Diffie Hellman(DH)算法来生成安全的机密,并且每个用户都根据其指定来分离机密。然后,管理员将输入数据拆分为属性,并使用NAE对其进行加密。当用户将请求发送到服务提供商时,将验证第三方审计员(TPA)维护的访问控制策略以进行数据访问。有效用户基于DH算法创建的访问控制策略从多个服务器接收数据。这项工作的主要优点是,未经授权的用户无法知道量子密钥和所生成的秘密,从而导致数据安全性提高。实验结果评估了针对不同措施的现有技术和提议技术的性能。

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