...
首页> 外文期刊>Journal of systems architecture >TP2SF: A Trustworthy Privacy-Preserving Secured Framework for sustainable smart cities by leveraging blockchain and machine learning
【24h】

TP2SF: A Trustworthy Privacy-Preserving Secured Framework for sustainable smart cities by leveraging blockchain and machine learning

机译:TP2SF:通过利用区块链和机器学习,为可持续智能城市提供可靠的隐私保障框架

获取原文
获取原文并翻译 | 示例
           

摘要

With the advancement in sensor technology and the proliferation of low-cost electronic circuits, Internet of Things (IoT) is emerging as a promising technology for realization of smart cities. However, challenges such as security, privacy, trust, scalability, verifiability, and centralization prevent faster adaptations of IoT-driven smart cities. Thus, in this paper, a Trustworthy Privacy-Preserving Secured Framework (TP2SF) for smart cities is presented. This framework includes three modules namely: a trustworthiness module, a two-level privacy module, and an intrusion detection module. In trustworthiness module, address-based blockchain reputation system is designed. In the two-level privacy module, a blockchain based enhanced Proof of Work (ePoW) technique is simultaneously applied with Principal Component analysis (PCA) to transform data into a new reduced shape for preventing inference and poisoning attacks. In the intrusion detection module, an optimized gradient tree boosting system (XGBoost) is deployed. Finally, due to inherited strengths and weaknesses of Fog?Cloud architecture, we present a blockchain-IPFS integrated Fog?Cloud infrastructure namely, CloudBlock and FogBlock to deploy proposed TP2SF framework in smart city. The TP2SF framework is evaluated using two realistic IoT-based datasets, namely ToN-IoT and BoT-IoT. The findings indicate the superiority of TP2SF framework over other state-of-the-art techniques in both nonblockchain and blockchain systems.
机译:随着传感器技术的进步和低成本电子电路的普及,物联网(IoT)正在成为实现智能城市的一项有前途的技术。然而,安全、隐私、信任、可扩展性、可验证性和集中化等挑战阻碍了物联网驱动的智能城市的更快适应。因此,本文提出了一种适用于智能城市的可信隐私保护安全框架(TP2SF)。该框架包括三个模块:可信模块、两级隐私模块和入侵检测模块。在可信度模块中,设计了基于地址的区块链信誉系统。在两级隐私模块中,基于区块链的增强工作证明(ePoW)技术与主成分分析(PCA)同时应用,将数据转换为新的简化形状,以防止推理和中毒攻击。在入侵检测模块中,部署了一个优化的梯度树增强系统(XGBoost)。最后,由于Fog继承的优点和缺点?云架构,我们提出了一个区块链IPFS集成的Fog?云基础设施,即CloudBlock和FogBlock,用于在智能城市中部署拟议的TP2SF框架。TP2SF框架使用两个基于物联网的现实数据集进行评估,即吨物联网和机器人物联网。这些发现表明TP2SF框架在非区块链和区块链系统中都优于其他最先进的技术。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号