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Towards Blockchain-Enabled Security Technique for Industrial Internet of Things Based Decentralized Applications

机译:旨在支持基于分散应用的工业互联网的SloctChain的安全技术

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As the Industrial Internet of Things (IIoT) is one of the emerging trends and paradigm shifts to revolutionize the traditional industries with the fourth wave of evolution or transform it into Industry 4.0. This all is merely possible with the sensor-enabled technologies, e.g., wireless sensor networks (WSNs) in various landscapes, where security provisioning is one of the significant challenges for miniaturized power hungry networks. Due to the increasing demand for the commercial Internet of things (IoT) devices, smart devices are also extensively adopted in industrial applications. If these devices are compromising the date/information, then there will be a considerable loss and critical issues, unlike information compromising level by the commercial IoT devices. So emerging industrial processes and smart IoT based methods in medical industries with state-of-the-art blockchain security techniques have motivated the role of secure industrial IoT. Also, frequent changes in android technology have increased the security of the blockchain-based IIoT system management. It is very vital to develop a novel blockchain-enabled cyber-security framework and algorithm for industrial IoT by adopting random initial and master key generation mechanisms over long-range low-power wireless networks for fast encrypted data processing and transmission. So, this paper has three remarkable contributions. First, a blockchain-driven secure, efficient, reliable, and sustainable algorithm is proposed. It can be said that the proposed solution manages keys randomly by introducing the chain of blocks with less power drain, a small number of cores, will slightly more communication and computation bits. Second, an analytic hierarchy process (AHP) based intelligent decision-making approach for the secure, concurrent, interoperable, sustainable, and reliable blockchain-driven IIoT system. AHP based solution helps the industry experts to select the more relevant and critical parameters such as (reliability in-line with a packet loss ratio), (convergence in mapping with delay), and (interoperability in association with throughput) for improving the yield of the product in the industry. Third, sustainable technology-oriented services are supporting to propose the novel cloud-enabled framework for the IIoT platform for regular monitoring of the products in the industry. Moreover, experimental results reveal that proposed approach is a potential candidate for the blockchain-driven IIoT system in terms of reliability, convergence, and interoperability with a strong foundation to predict the techniques and tools for the regulation of the adaptive system from Industry 4.0 aspect.
机译:工业物联网(IIoT)是一种新兴的趋势和范式转变,以第四次浪潮的演变彻底改变传统行业或将其转变为工业4.0。这一切仅在传感器支持技术的情况下才有可能实现,例如各种环境中的无线传感器网络(WSN),其中安全供应是小型化耗电网络的重大挑战之一。由于对商用物联网(IoT)设备的需求不断增加,智能设备也被广泛应用于工业应用中。如果这些设备损害了日期/信息,那么将有相当大的损失和关键问题,这与商业物联网设备损害信息的程度不同。因此,医疗行业中新兴的工业流程和基于智能物联网的方法,以及最先进的区块链安全技术,激发了安全工业物联网的作用。此外,android技术的频繁变化提高了基于区块链的IIoT系统管理的安全性。通过在远程低功耗无线网络上采用随机初始密钥和主密钥生成机制,快速加密数据处理和传输,为工业物联网开发基于区块链的新型网络安全框架和算法至关重要。因此,本文有三个显著的贡献。首先,提出了一种区块链驱动的安全、高效、可靠、可持续的算法。可以说,所提出的解决方案通过引入功耗较小的区块链、少量的内核来随机管理密钥,将略微增加通信和计算位。第二,基于层次分析法(AHP)的智能决策方法,用于安全、并发、互操作、可持续和可靠的区块链驱动的IIoT系统。基于AHP的解决方案有助于行业专家选择更相关、更关键的参数,例如(与丢包率一致的可靠性),(映射与延迟的收敛性),以及(与吞吐量相关的互操作性),以提高行业产品的产量。第三,以可持续技术为导向的服务正在支持为IIoT平台提出新的云支持框架,以定期监控行业内的产品。此外,实验结果表明,所提出的方法是块链驱动的IIOT系统在可靠性、收敛性和互操作性方面的潜在候选,为从工业4方面预测自适应系统的技术和工具提供了坚实的基础。

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