首页> 外文期刊>Journal of network and computer applications >BlockSecIoTNet: Blockchain-based decentralized security architecture for IoT network
【24h】

BlockSecIoTNet: Blockchain-based decentralized security architecture for IoT network

机译:BlockSecIoTNet:物联网网络基于区块链的分散式安全架构

获取原文
获取原文并翻译 | 示例
           

摘要

The exponential growth of the use of insecure stationary and portable devices in the Internet of Things (IoT) network of the smart city has made the security of the smart city against cyber-attacks a vital issue. Various mechanisms for detecting security attacks that rely on centralized and distributed architectures have already been proposed, but they tend to be inefficient due to such problems as storage constraints, the high cost of computation, high latency, and a single point of failure. Moreover, existing security mechanisms are faced with the issue of monitoring and collecting historic data throughout the entire IoT network of the smart city in order to deliver optimal security and defense against cyberattacks. To address the current challenges, this paper proposes a decentralized security architecture based on Software Defined Networking (SDN) coupled with a blockchain technology for IoT network in the smart city that relies on the three core technologies of SDN, Blockchain, and Fog and mobile edge computing in order to detect attacks in the IoT network more effectively. Thus, in the proposed architecture, SDN is liable to continuous monitoring and analysis of traffic data in the entire IoT network in order to provide an optimal attack detection model; Blockchain delivers decentralized attack detection to mitigate the "single point of failure" problem inherent to the existing architecture; and Fog and mobile edge computing supports attack detection at the fog node and, subsequently, attack mitigation at the edge node, thus enabling early detection and mitigation with lesser storage constraints, cheaper computation, and low latency. To validate the performance of the proposed architecture, it was subjected to an experimental evaluation, the results of which show that it outperforms both centralized and distributed architectures in terms of accuracy and detection time.
机译:智能城市的物联网(IoT)网络中不安全的固定和便携式设备的使用呈指数增长,这使智能城市抵御网络攻击的安全性成为至关重要的问题。已经提出了各种依靠集中式和分布式体系结构检测安全攻击的机制,但是由于诸如存储约束,计算成本高,等待时间长和单点故障之类的问题,它们倾向于效率低下。此外,现有的安全机制面临着在智慧城市的整个IoT网络中监视和收集历史数据的问题,以提供最佳的安全性和防御网络攻击的能力。为了应对当前的挑战,本文提出了一种基于软件定义网络(SDN)的分散式安全架构,并结合了SDN,区块链,雾和移动边缘三项核心技术,为智慧城市中的物联网网络提供了一种区块链技术计算以更有效地检测IoT网络中的攻击。因此,在提出的架构中,SDN易于对整个物联网网络中的流量数据进行连续监视和分析,以提供最佳的攻击检测模型。区块链提供分散式攻击检测,以缓解现有架构固有的“单点故障”问题; Fog和移动边缘计算支持在Fog节点处进行攻击检测,并随后在边缘节点处进行攻击缓解,从而能够以较少的存储约束,更便宜的计算和较低的延迟实现早期检测和缓解。为了验证所提出体系结构的性能,对它进行了实验评估,结果表明,就准确性和检测时间而言,它优于集中式和分布式体系结构。

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