对安全性和性能之间的权衡进行建模以支持产品生命周期

R. Fujdiak, Petr Blazek, L. Apvrille, Zdenek Martinasek, P. Mlynek, R. Pacalet, D. Smekal, Pavel Mrnustik, M. Barabas, Maysam Zoor
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引用次数: 2

摘要

如今,现代信息物理系统的产品开发由产品生命周期(PLC)定义的许多阶段组成。然而,许多制造商并没有充分关注每个PLC阶段——如果有的话。这导致了开发成本的增加。因此,PLC的第一阶段变得至关重要。此外,通过在早期阶段测试所需的参数,例如通过建模工具、仿真工具或模拟器,可以节省很大一部分开发成本。考虑到当前的网络战争和日益增长的威胁,安全正成为PLC中最关键的主题之一。但是,安全性方面需要在性能方面进行重大权衡。本文侧重于在PLC的早期阶段通过仿真处理这些权衡的方法,其中基本要求已经确定。为了建立安全需求,广泛的安全软件开发生命周期目录与基于UML/SysML-Sec的高级建模框架TTool一起使用,以进行性能权衡分析。这种组合为在安全性和性能需求之间建立平衡创建了一种强大的方法。例如,选择一个特定的安全需求。即机密性,由加密算法AES实现。这介绍了在PLC阶段中处理协同工程问题的方法和方法,其中两个具有不同目标(安全性、性能)的不同开发团队正在一起处理单个组合问题。我们的结果应该有助于理解早期PLC阶段的重要性,并显示如何处理这些问题的一种可能的方法。
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Modeling the Trade-off Between Security and Performance to Support the Product Life Cycle
Nowadays, the development of products for modern cyber-physical systems consists of many stages defined by the product life cycle (PLC). However, many manufacturers are not paying full attention - if any at all - to each PLC stage. This, among others, is causing growth of development costs. Therefore, the first stage of PLC becomes crucial. Moreover, a significant part of the development costs might be saved via testing the required parameters in this early stage, e.g., via modeling tools, simulation tools or emulators. Considering among others the current cyber-warfare and everyday growing number of threats, security is becoming one of the most critical topics in PLC. However, the security aspects come with significant trade-offs with performance. This paper focuses on methodology for dealing with these trade-offs via simulation in the early stage of PLC, where basic requirements are settled. To establish security requirements, an extensive Secure Software Development Life Cycle catalog is used together with an advanced modeling framework TTool based on UML/SysML-Sec for performance trade-off analysis. This combination creates a powerful approach for establishing the balance between security and performance requirements. As an example, a particular security requirement is selected. Namely, confidentiality, fulfilled by the encryption algorithm AES. This introduces the methodology and approach to the co-engineering issue in the PLC stages, where two different development teams with also different goals (security, performance) are dealing together with the single combined issue. Our results should help to understand the importance of the early PLC stage and show one possible approach on how to deal with these issues.
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