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首页> 外文期刊>Concurrency and computation: practice and experience >SEC-H5: Secure and efficient integration of settings of enhanced HTML5 XSS vector defensive framework on edge network of fog nodes
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SEC-H5: Secure and efficient integration of settings of enhanced HTML5 XSS vector defensive framework on edge network of fog nodes

机译:SEC-H5:在雾节点边缘网络上的增强型HTML5 XSS矢量防御框架设置安全有效地集成

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摘要

The authors introduce an enhanced HTML5 (H5) Cross-Site Scripting (H5-XSS) attack vectordefensive model that safeguards and maintains the confidentiality of users accessing the webapplications hosted on the fog nodes. Initially, the model performs in self-training manner andestimates some features of H5 script code at the simulated desktop host systems of cloudinfrastructure. Second, a process of H5 feature estimation gets re-executed for the onlinegenerated HTTP response on the edge network of fog device. Any oddity in these two featuressets results in the consequent nested context-familiar sanitization of the distrustful script codeon an installed fog nodes. The author design their framework structure on an open applicationinfrastructural structure of Cisco Iox framework of various networked edge devices as fognodes. The authors configure the tested bed of H5 web platforms on the nodes of the fogcomputing network for evaluating the malicious script alleviation capability of their model.Evaluation outcomes expose that the author's technique is skilled sufficient for sensing andexcluding the suspicious H5 code with sufferable percentage of False Negatives (FNs), FalsePositives (FPs), and reduced overall performance overhead during the peak congestion ofgeneration of sanitized HTTP response on the fog nodes.
机译:作者介绍了增强的HTML5(H5)跨站点脚本(H5-XS)攻击向量保护和维护访问网络的用户的保密性模型在雾节点上托管的应用程序。最初,该模型以自培训方式执行估计H5脚本代码在模拟桌面主机系统的一些功能基础设施。其次,H5特征估计的过程得到了在线重新执行在雾设备边缘网络上生成HTTP响应。这两个特征中的任何奇怪性在不信任的脚本代码的结果嵌套上下文熟悉的待遇中在安装的雾节点上。作者在开放式应用程序上设计其框架结构各种网络边缘设备的Cisco IOX框架的基础设施结构作为雾节点。作者在雾的节点上配置了H5 Web平台的测试床计算网络评估其模型的恶意脚本缓解能力。评估结果暴露了作者的技术是熟练足以感应的除了可疑的H5代码,具有似乎持有的假阴性(FNS),虚假在峰值拥塞期间,阳性(FPS),以及减少整体性能开销在FOG节点上生成消毒HTTP响应。

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