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首页> 外文期刊>Journal of information security and applications >FUPE: A security driven task scheduling approach for SDN-based IoT-Fog networks
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FUPE: A security driven task scheduling approach for SDN-based IoT-Fog networks

机译:FUPE:基于SDN的IOT-FOG网络的安全驱动任务调度方法

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Fog computing is a paradigm to overcome the cloud computing limitations which provides low latency to the users & rsquo; applications for the Internet of Things (IoT). Software-defined networking (SDN) is a practical networking infrastructure that provides a great capability in managing network flows. SDN switches are powerful devices, which can be used as fog devices/fog gateways simultaneously. Hence, fog devices are more vulnerable to several attacks. TCP SYN flood attack is one of the most common denial of service attacks, in which a malicious node produces many half-open TCP connections on the targeted computational nodes so as to break them down. Motivated by this, in this paper, we apply SDN concepts to address TCP SYN flood attacks in IoT & ndash;fog networks . We propose FUPE, a security-aware task scheduler in IoT & ndash;fog networks. FUPE puts forward a fuzzy-based multi-objective particle swarm Optimization approach to aggregate optimal computing resources and providing a proper level of security protection into one synthetic objective to find a single proper answer. We perform extensive simulations on IoT-based scenario to show that the FUPE algorithm significantly outperforms state-ofthe-art algorithms. The simulation results indicate that, by varying the attack rates, the number of fog devices, and the number of jobs, the average response time of FUPE improved by 11% and 17%, and the network utilization of FUPE improved by 10% and 22% in comparison with Genetic and Particle Swarm Optimization algorithms, respectively.
机译:雾计算是克服云计算限制的范例,为用户提供了低延迟的云计算限制;互联网的应用程序(物联网)。软件定义的网络(SDN)是一个实用的网络基础架构,在管理网络流方面提供了很大的能力。 SDN交换机是功能强大的设备,可同时用作雾设备/雾网关。因此,FOG设备更容易受到几种攻击。 TCP SYN泛洪攻击是最常见的服务攻击之一,其中恶意节点在目标计算节点上产生许多半开的TCP连接,以便打破它们。在此论文中,我们应用SDN概念来解决IOT&Ndash中的TCP SYN洪泛攻击;雾网络。我们提出了IoT&Ndash中的安全感知任务调度程序fupe;雾网络。 Fupe提出了一种基于模糊的多目标粒子群优化方法来聚合最佳计算资源,并为一个合成目标提供适当的安全保护,以找到一个正确的答案。我们对基于物联网的场景进行了广泛的模拟,以表明FuPE算法显着优于最先进的算法。仿真结果表明,通过改变攻击率,雾设备的数量和作业的数量,FUPE的平均响应时间提高了11%和17%,并且Fupe的网络利用率提高了10%和22分别与遗传和粒子群优化算法相比的%。

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