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首页> 外文期刊>International Journal of Distributed Sensor Networks >Efficient and secure attribute-based heterogeneous online/offline signcryption for body sensor networks based on blockchain
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Efficient and secure attribute-based heterogeneous online/offline signcryption for body sensor networks based on blockchain

机译:基于区块链的高效安全的基于属性的异构在线/离线签名加密技术

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In body sensor networks, both wearable and implantable biosensors are deployed in a patient body to monitor and collect patient health record information. The health record information is then transmitted toward the medical server via a base station for analysis, diagnosis, and treatment by medical experts. Advancement in wireless technology although improves the patient health–monitoring mechanism, but still there are some limitations regarding security, privacy, and efficiency due to open wireless channel and limited resources of body sensor networks. To overcome these limitations, we have proposed an efficient and secure heterogeneous scheme for body sensor networks, in which biosensor nodes use a certificate-less cryptography environment to resolve the key escrow and certificate-management problems, while MS uses a public key infrastructure environment to enhance the scalability of the networks. Furthermore, we design an online/offline signcryption method to overcome the burden on biosensor nodes. We split the signcryption process into two phases: offline phase and online phase. In the offline phase, the major operations are computed without prior knowledge of patient data. While in online phase, the minor operations are computed when patient data are known. Besides, we have used a new hybrid blockchain technology approach for the secure transmission of patient information along with attributes stored in the medical server toward the cloud that provides ease of patient data access remotely from anywhere by the authorized users and data backup in case of medical server failure. Moreover, hybrid blockchain provides advantages of interoperability, transparency traceability, and universal access. The formal security analysis of the proposed scheme is proved in the standard model, and informal security assures that our scheme provides resistance against possible attacks. As compared to other existing schemes, our proposed scheme consumes fewer resources and efficient in terms of processing cost, transmission overhead, and energy consumption.
机译:在人体传感器网络中,可穿戴式和植入式生物传感器都部署在患者体内,以监视和收集患者的健康记录信息。然后,将健康记录信息通过基站发送到医疗服务器,以供医疗专家进行分析,诊断和治疗。无线技术的进步虽然改善了患者的健康监测机制,但是由于开放的无线信道和人体传感器网络的有限资源,在安全性,隐私和效率方面仍然存在一些限制。为了克服这些限制,我们为人体传感器网络提出了一种高效且安全的异构方案,其中生物传感器节点使用无证书的密码环境来解决密钥托管和证书管理问题,而MS使用公钥基础结构环境来解决该问题。增强网络的可扩展性。此外,我们设计了一种在线/离线签密方法来克服生物传感器节点上的负担。我们将签密过程分为两个阶段:离线阶段和在线阶段。在离线阶段,无需事先了解患者数据即可计算主要操作。在联机阶段时,将在知道患者数据时计算次要操作。此外,我们采用了一种新型的混合区块链技术方法,可将患者信息以及存储在医疗服务器中的属性安全地传输到云端,从而使授权用户可以从任何地方远程访问患者数据,并在医疗情况下轻松备份数据服务器故障。此外,混合区块链还具有互操作性,透明性可追溯性和通用访问的优势。在标准模型中证明了所提议方案的形式安全性分析,而非正式安全性则确保了我们的方案可以抵抗可能的攻击。与其他现有方案相比,我们提出的方案消耗更少的资源,并且在处理成本,传输开销和能耗方面都非常有效。

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