Securing Smart City Services in Cyber-Physical Systems Using the Computation Annealed Selection Process

Aldosary Saad, Abdullah Alharbi
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引用次数: 1

Abstract

Cyber-physical systems in a smart city environment offer secure computations in addition to robust resources and secure information exchanges. From the security aspect, the selection of legitimate computing resources is considered the most trustworthy measure for preserving user and data privacy. However, the outlier information results in false computations and time-consuming privacy measures for smart city users. This article introduces the Computation Annealed Selection Process (CASP) for combating outlier information in cyber-physical system networks. This process is assimilated with different infrastructure units in the smart city in an adaptable fashion. The adaptive measure administers information and user privacy through mutual time-key-based authentication. Information privacy is endured until the smart city provider provides a valid service interval. W2The service interval is evaluated for its consistency in maintaining the privacy and is validated using decision-tree learning. The decision tree performs interval classification and key assignment recommendations. Based on the decisions, the privacy is either prolonged or withdrawn for the information exchanged between the users and service providers. This process is repeated until the end of the service interval, identifying the outlier information in legitimate intervals. The proposed process improves detection, legitimacy rate, interval time, and interval rate by 7.57%, 10.4%, 13.15%, and 7.59%, respectively.
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利用计算退火选择过程保护网络物理系统中的智慧城市服务
智慧城市环境中的网络物理系统除了提供可靠的资源和安全的信息交换外,还提供安全的计算。从安全角度来看,选择合法的计算资源被认为是保护用户和数据隐私的最可靠措施。然而,这些离群信息会导致智能城市用户的错误计算和耗时的隐私措施。本文介绍了计算退火选择过程(CASP)在网络物理系统网络中处理离群信息的方法。这个过程以一种适应性强的方式与智慧城市的不同基础设施单元相融合。该自适应措施通过基于时间密钥的相互认证来管理信息和用户隐私。在智慧城市提供商提供有效的服务间隔之前,信息隐私将被保留。w2评估服务间隔在维护隐私方面的一致性,并使用决策树学习进行验证。决策树执行区间分类和键分配建议。根据这些决定,用户和服务提供者之间交换的信息的隐私被延长或撤销。此过程一直重复,直到服务间隔结束,在合法间隔内识别离群信息。该方法将检出率、正确率、间隔时间和间隔率分别提高了7.57%、10.4%、13.15%和7.59%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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