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Pervasive Futuristic Healthcare and Blockchain enabled Digital Identities-Challenges and Future Intensions

机译:无处不在的未来医疗保健和区块链支持的数字身份挑战和未来内涵

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These days, the usage of healthcare applications in the secure and authenticate blockchain network has been growing progressively. The distributed healthcare applications can store and shared data with another node without any centralized authority by exploiting the blockchain technology. However, existing proof of work inside blockchain did not consider the anomaly detection in healthcare networks and mobility of the workload widely ignored in the literature studies. In this paper, the study investigates the travelling salesman problem with the scheduling, threshold, and anomaly detection constraints in distributed fog nodes. The fog nodes are local servers and implementing inside the hospital to facilitate the users from different healthcare services. The study devises the mobility scheduler anomaly detection (MSAD) schemes which consist of two phases, e.g., the initial assignment of healthcare workloads to optimal fog nodes and anomaly detection and validation in the healthcare blockchain network. Simulation results show that MSAD outperformed in terms of scheduling, threshold, anomaly detection in the healthcare blockchain network as compared to baseline studies.
机译:如今,医疗保健应用程序在安全和认证区块链网络中的使用正在逐步增加。通过利用区块链技术,分布式医疗保健应用程序可以在没有任何集中权限的情况下与另一个节点存储和共享数据。然而,现有的BooWork链中的工作证明没有考虑到医疗网络中的异常检测和工作量的移动性在文献研究中被广泛忽略。本文研究了分布式光纤陀螺节点中具有调度、阈值和异常检测约束的旅行商问题。fog节点是本地服务器,在医院内部实现,以方便来自不同医疗服务的用户。本研究设计了移动调度器异常检测(MSAD)方案,该方案包括两个阶段,例如,将医疗工作负载初始分配给最佳fog节点,以及医疗区块链网络中的异常检测和验证。仿真结果表明,与基线研究相比,医疗区块链网络中的MSAD在调度、阈值和异常检测方面表现出色。

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