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On the design and implementation of a secure blockchain-based hybrid framework for Industrial Internet-of-Things

机译:关于工业互联网安全区间混合框架的设计与实现

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摘要

Industrial Internet-of-Things (IIoT) refers to the next stage in the evolution of organizations where collecting, analyzing, recording the data and controlling the entire activities of the various entities is achieved with connected machines in real time with enhanced quality and minimum production cost. Although, various phenomenal schemes for cross management activities exist in current systems, however there are still several concerns with such setups within the organizations. Further, the introduction of Internet-of-things (IoT) within the industries is increasing the scope of applications by connecting every device with the Internet. However, these IoT devices are prone to various attacks by the intruder, thus affecting the industry with lower production and high manufacturing cost, to name a few. To address these issues, Blockchain is considered as one of the best scheme which offers protection and secrecy of control systems in real time up to certain level. In this paper, we have proposed a hybrid Blockchain mechanism for providing security for a multi-national level IIoT with offices located in multiple countries. The proposed framework is validated rigorously against various security metrics over conventional mechanism. The simulation results suggest that our proposed solution leads to 94% efficiency in terms of DoS and DDoS threat, message alteration attack and authentication delay.
机译:工业互联网的东西(IIT)是指在采集,分析,记录数据和控制各种实体的整个活动的组织演进中的下一阶段,实时通过增强的质量和最低生产来实现各种实体的整个活动成本。虽然,当前系统中存在各种跨管理活动的现象计划,但是组织内的这种设置仍有几个问题。此外,在行业内引入互联网(IOT)正在通过将每个设备与因特网连接来增加应用范围。然而,这些物联网设备容易受到入侵者的各种攻击,从而影响生产的产业较低,制造成本高,为少数人名。为了解决这些问题,区块链被认为是最好的方案之一,该方案实时提供控制系统的保护和保密程度。在本文中,我们提出了一个混合区块链机制,用于为多个国家/地区的办事处提供多国级IIOT的安全。通过传统机制,拟议的框架严格验证了各种安全指标。仿真结果表明,我们提出的解决方案在DOS和DDOS威胁方面导致94%的效率,消息改建攻击和认证延迟。

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