首页> 外文会议>AIAA space and astronautics forum and exposition >Analyzing Cyber Security Threats on Cyber-Physical Systems using Model-Based Systems Engineering
【24h】

Analyzing Cyber Security Threats on Cyber-Physical Systems using Model-Based Systems Engineering

机译:使用基于模型的系统工程分析网络安全威胁的网络安全威胁

获取原文

摘要

The spectre of cyber attacks on aerospace systems can can no longer be ignored, given that many of the components and vulnerabilities that have been successfully exploited by the adversary on other infrastructures are the same as those deployed and used within the aerospace environment. An important consideration with respect to the mission/safety critical infrastructure supporting space operations is that an appropriate defensive response to an attackhas the goal to preserve critical mission objectives in the presence of adversarial activity. Which invariably involves the need for high precision and accuracy, because an incorrect response can trigger unacceptable losses involving lives and/or significant financial damage. A highly precise defensive response, considering the typical complexity of aerospace environments, requires a detailed and well-founded understanding of the underlying system. To capture this detailed and rigorous understanding, a structured approach for modeling aerospace systems has been developed. The approach includes physical elements, network topology, software applications, system functions, and usage scenarios. We leverage Model-Based Systems Engineering methodology by utilizing the Object Management Group's Systems Modeling Language to represent the system being analyzed and also utilize model transformations to provide relevant aspects of the model to specialized analyses. A novel visualization approach is utilized to visualize the entire model as a three-dimensional graph, allowing easier interaction with subject matter experts. The model provides a unifying structure for analyzing the impact of a particular attack or a particular type of attack. A graph-based propagation analysis based on edge and node labels is used to analyze the model.
机译:鉴于在其他基础设施上成功利用的许多成功利用的组件和漏洞的许多组成部分和漏洞与航空航天环境中部署和使用的许多组成部分和漏洞,可以不再忽略航空航天系统的网络攻击幽灵。关于特派团/安全关键基础设施支持空间作业的重要考虑因素是对攻击性的适当防御性反应,该目标在存在对抗性活动存在下保存关键任务目标的目标。这总是涉及高精度和准确性的需要,因为不正确的响应可以引发涉及生命和/或重大财务损害的不可接受的损失。考虑到航空航天环境的典型复杂性,高精度的防守反应需要对底层系统的详细和充实的理解。为了捕获这种详细和严格的理解,已经开发了一种用于建模航空航天系统的结构化方法。该方法包括物理元素,网络拓扑,软件应用程序,系统功能和使用情况。我们利用对象管理组的系统建模语言来利用基于模型的系统工程方法来表示正在分析的系统,并利用模型转换来为专业分析提供模型的相关方面。一种新颖的可视化方法用于可视化整个模型作为三维图,允许更容易与主题专家的交互。该模型提供了一种统一结构,用于分析特定攻击或特定类型的攻击的影响。基于边缘和节点标签的基于图形的传播分析用于分析模型。

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