面向云和物联网安全的基于软件定义周界的门禁系统开发

Seung-Kyu Park
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引用次数: 2

摘要

最近,随着云、移动和物联网的引入变得活跃,对技术开发的需求日益增长,这些技术可以补充基于防火墙和网络访问控制(NAC)等固定边界的传统安全解决方案的局限性。针对这一点,SDP(软件定义边界)最近作为一种新的基础技术出现了。与现有的安全技术不同,SDP可以设置安全边界(安装网关S/W),而不考虑受保护资源(服务器、物联网网关等)的位置,并抵消大多数基于网络的黑客攻击,这些攻击正变得越来越软。特别是,SDP被认为是一种适用于云和物联网领域的安全技术。本研究将SDP与基于哈希树的大规模数据高速签名技术相结合,提出了一种新的访问控制系统。通过采用大规模数据高速签名技术的进程认证功能,提前防范未知恶意软件入侵端点的威胁,并实现内核级安全技术,使主要数据备份和恢复过程中不可能受到用户级攻击。因此,端点安全这一SDP的薄弱环节得到了加强。提出的系统作为原型开发,并通过授权测试机构(TTA V&V test)的测试完成了性能测试。基于sdp的门禁解决方案是一项非常有潜力的技术,可以用于智能汽车安全。
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Development of Software-Defined Perimeter-based Access Control System for Security of Cloud and IoT System
Recently, as the introduction of cloud, mobile, and IoT has become active, there is a growing need for technology development that can supplement the limitations of traditional security solutions based on fixed perimeters such as firewalls and Network Access Control (NAC). In response to this, SDP (Software Defined Perimeter) has recently emerged as a new base technology. Unlike existing security technologies, SDP can sets security boundaries (install Gateway S/W) regardless of the location of the protected resources (servers, IoT gateways, etc.) and neutralize most of the network-based hacking attacks that are becoming increasingly sofiscated. In particular, SDP is regarded as a security technology suitable for the cloud and IoT fields. In this study, a new access control system was proposed by combining SDP and hash tree-based large-scale data high-speed signature technology. Through the process authentication function using large-scale data high-speed signature technology, it prevents the threat of unknown malware intruding into the endpoint in advance, and implements a kernel-level security technology that makes it impossible for user-level attacks during the backup and recovery of major data. As a result, endpoint security, which is a weak part of SDP, has been strengthened. The proposed system was developed as a prototype, and the performance test was completed through a test of an authorized testing agency (TTA V&V Test). The SDP-based access control solution is a technology with high potential that can be used in smart car security.
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