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Analyzing Generic Routing Encapsulation (GRE) and IP Security (IPSec) Tunneling Protocols for Secured Communication over Public Networks

机译:分析通用路由封装(GRE)和IP安全性(IPSec)隧道协议以实现公共网络上的安全通信

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The extensive use of the Internet has created excessive demand for security and privacy in the communication channels. The increase in connected devices and the need to remotely access network resources has also amplified the need for strong security measures. Virtual Private Networks, tunneling methods, and multi-layer encryptions have all been used in different network architectures and topologies to secure end-to-end transmission of information. The increase in cyber-attacks and data breaches in the past decades is a clear indication of the concerns surrounding information security. From network flooding, Denial of Services (DoS) to sensitive data exposure, the consequences of a poorly secured network can be detrimental to an organization and end-users. With the projected IoT technology, devices communication needs to be efficiently protected if it has to pass through public networks such as the Internet. This paper analyses two of the most widely used tunnelling protocols in secured data transmission, the Generic Routing Encapsulation (GRE) and the IP Security (IPSec), establishes a comparison between them and evaluate their capabilities for security and privacy measures on the internet network, using network simulators. We use the graphical network simulator 3 (GNS3) emulator for traffic analyses.
机译:Internet的广泛使用对通信通道中的安全性和隐私提出了过多的要求。连接设备的增加以及对远程访问网络资源的需求也扩大了对强大安全措施的需求。虚拟专用网,隧道方法和多层加密已在不同的网络体系结构和拓扑中使用,以确保信息的端到端传输。在过去的几十年中,网络攻击和数据泄露事件的增加清楚地表明了人们对信息安全的担忧。从网络泛滥,拒绝服务(DoS)到敏感的数据公开,网络安全性不高的后果可能对组织和最终用户不利。使用预计的IoT技术,如果设备通信必须通过Internet等公共网络,则需要有效地保护设备通信。本文分析了在安全数据传输中使用最广泛的两种隧道协议,即通用路由封装(GRE)和IP安全性(IPSec),进行了比较,并评估了它们在Internet网络上的安全性和隐私保护措施的能力,使用网络模拟器。我们使用图形网络模拟器3(GNS3)模拟器进行流量分析。

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