Blockchain Security Using Merkle Hash Zero Correlation Distinguisher for the IoT in Smart Cities
【Author】 Patan, Rizwan; Manikandan, Ramachandran; Parameshwaran, Ramalingam; Perumal, Sivanesan; Daneshmand, Mahmoud; Gandomi, Amir H.
【Source】IEEE INTERNET OF THINGS JOURNAL
【影响因子】10.238
【Abstract】Internet of Things (IoT) data is one of the most important assets in business models for offering various ubiquitous and brilliant services. The IoT is provided with the advantage of susceptibility that cybercriminals and other malicious users. Even though smart cities are intended to extend productivity and efficiency, residents and authorities face risks when they avoid cybersecurity. The conventional blockchain methods were introduced to ensure the secure management and examination of the smart city big data. But, the blockchains are found to have computationally high costs, and failed to improve the security, not adequate resource-constrained IoT devices have been designated for smart cities. In order to address these issues, the proposed novel blockchain model called blockchain secured Merkle hash zero correlation distinguisher (BSMH-ZCD) is suitable for IoT devices within the cloud infrastructure. The objective of the BSMH-ZCD method is to enhance security and reduce the run time and computational overhead. Initially, the Merkle hash tree is used to create the hash value with every transaction. Next, the zero correlation distinguisher is applied to perform the data encryption and decryption operation for the ARX block for obtaining proficient secure data access in the IoT devices. Experimental assessment of the proposed BSMH-ZCD method and existing methods are carried out by using the taxi driver data set and Novel Corona Virus 2019 data set with different factors, such as running time, computational complexity, and security with respect to a number of blocks and executions. By using the taxi driver data set, the experimental results reveal that the BSMH-ZCD method performs better with a 19% improvement in security, 20% reduction of computational complexity, and 29% faster running time for IoT compared to existing works.
【Keywords】Blockchains; Security; Internet of Things; Smart cities; Correlation; Computational modeling; Complexity theory; Blockchain; cloud infrastructure; hash zero correlation distinguisher (ZCD); Internet of Things (IoT); Merkle tree; smart cities
【发表时间】2022 OCT 1
【收录时间】2022-10-05
【文献类型】实验仿真
【主题类别】
区块链应用-实体经济-智慧城市领域
eliana
目前在智慧城市中引入区块链方法存在计算成本高、安全性较弱、符合条件的物联网设备不足等问题。为了解决这些问题,本文提出了一个新的区块链模型,名为基于区块链保障的默克尔哈希零相关区分器 (BSMH-ZCD),该模型适用于云设施中的物联网设备,目的是增强安全性并减少运行时间和计算开销。作者利用出租车司机数据集和新型Corona Virus 2019数据集,对所提出的BSMH-ZCD方法和现有方法进行了实验评估,结果显示BSMH-ZCD安全性提高了19%,计算复杂性降低了20%,运行时间缩短了29%。
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