安全容错系统评估的多步仿真方法

Ruchika Mehresh, S. Upadhyaya, K. Kwiat
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引用次数: 3

摘要

随着新的容错和安全技术的出现,也需要合适的工具来评估它们。通常,可以通过逻辑测试用例来估计和验证系统的安全性,但是需要对系统上安全算法的性能开销进行数值分析。安全方法和容错系统设计的多样性使得研究人员不可能提出一个标准的、负担得起的、公开可用的仿真工具、评估框架或实验测试平台。因此,研究人员从各种可用的基于建模、基于实现或基于仿真的方法中进行选择,以评估他们的设计。所有这些方法都有一定的优点和一些缺点。例如,系统原型的开发提供了更准确的系统分析,但与模拟不同,它不是高度可伸缩的。本文提出了一种多步骤、基于仿真的安全容错系统性能评估方法。我们使用分而治之的方法对整个安全系统建模,这种方法允许在不同的粒度级别上使用不同的分析工具。此评估程序试图在系统性能分析的效率、努力、成本和准确性之间取得平衡。我们通过使用JAVA实现结合ARENA模拟分析安全和容错系统的性能,逐步演示这种方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Multi-step Simulation Approach toward Secure Fault Tolerant System Evaluation
As new techniques of fault tolerance and security emerge, so does the need for suitable tools to evaluate them. Generally, the security of a system can be estimated and verified via logical test cases, but the performance overhead of security algorithms on a system needs to be numerically analyzed. The diversity in security methods and design of fault tolerant systems make it impossible for researchers to come up with a standard, affordable and openly available simulation tool, evaluation framework or an experimental test-bed. Therefore, researchers choose from a wide range of available modeling-based, implementation-based or simulation-based approaches in order to evaluate their designs. All of these approaches have certain merits and several drawbacks. For instance, development of a system prototype provides a more accurate system analysis but unlike simulation, it is not highly scalable. This paper presents a multi-step, simulation-based performance evaluation methodology for secure fault tolerant systems. We use a divide-and-conquer approach to model the entire secure system in a way that allows the use of different analytical tools at different levels of granularity. This evaluation procedure tries to strike a balance between the efficiency, effort, cost and accuracy of a system’s performance analysis. We demonstrate this approach in a step-by-step manner by analyzing the performance of a secure and fault tolerant system using a JAVA implementation in conjunction with the ARENA simulation.
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