使用 SysML 建立 Kubernetes 集群的可靠性和可用性模型

Myron Hecht, Scott Agena
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引用次数: 0

摘要

本文展示了基于模型的系统工程和 SysML 在 Kubernetes 集群中的应用,以及如何将这些模型的结果用于设计和架构决策。本文有两大创新。首先是使用 SysML 对计算机系统的可靠性/可用性建模,该系统采用 Kubenetes 的容器化软件架构,Kubenetes 是容器化架构最常用的协调(系统管理)平台[1]。通过使用 SysML,可以将可靠性和可用性模型纳入基于模型的系统工程(MBSE)开发流程。这样做的好处是能做出更好的设计决策并降低成本。第二项创新是介绍如何利用 Litmus Chaos 故障模拟测试框架[8]对可靠性/可用性模型参数进行实证测量。在 Kubernetes 平台上构建的系统可以增量开发,这样就可以观察和测量具有部分功能的可执行系统,从而提供有关系统可靠性和可用性性能的早期反馈。早期反馈可实现更准确的评估,并在必要时采取更有效的纠正措施。SysML 模型的数值结果通过一个独立模型进行了验证。两个模型的结果相差 9 倍或更多。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Reliability and Availability Model of a Kubernetes Cluster Using SysML
This paper demonstrates the use of Model Based Systems Engineering and SysML for a Kubernetes cluster and how the results of such models can be used for design and architectural decisions. There are two major innovations in this paper. The first is use of SysML for reliabiltiy/availability modeling of a computer system with a containerized software architecture using Kubenetes, the most common orchestration (system management) platform for containerized architectures [1]. By using SysML, it is possible to incorporate reliability and availability models into a Model Based Systems Engineering (MBSE) development process. The benefits are better design decisions and lower cost. The second innovation is a description of how the Litmus Chaos failure simulation testing framework [8] can be used for empirical measurement of reliability/availability model parameters. Systems built on the Kubernetes platform can be developed incrementally so that executable systems with partial functionality can be observed and measured to provide early feedback on system reliability and availability performance. The early feedback enables more accurate assessments and more effective corrective actions if necessary. The numerical results of the SysML model were verified using an independent model. The results of the two models agreed to the 9th significant figure or better.
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