使用范畴论扩展进行系统架构、分析和设计

Charles E. Dickerson;Michael K. Wilkinson
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引用次数: 0

摘要

系统工程缺乏传统工程学科所享有的科学和数学基础。作者早先的工作为体系结构定义和模型理论在工程中的应用制定了先进的数学方法。本文通过一种语义更丰富的代数逻辑(表示为 CoR)定义了关系范畴的扩展,适用于分析和设计。这是对我们早期工作严谨基础的补充和扩展。CoR 将类别理论与语义更丰富的逻辑相结合,作为一种架构语言,用于指定概念的结构视图,以及用于分析和设计的一致的图形和代数关系视图。通过雷达案例研究,展示了将这些视图应用于日常工程实践的方法。CoR 还可以提高建模语言(如 SysMLv2)的表达能力。定义了模式以提供视图的数学蓝图。其目的是让 CoR 可以在非常适合工程实践者的系统工具中实现。本文为建立新一代系统工程方法论、工具和语言提供了一个严谨而实用的平台。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Architecture, Analysis, and Design of Systems Using Extensions of Category Theory
The engineering of systems has lacked the scientific and mathematical underpinnings enjoyed by traditional engineering disciplines. Earlier work of the authors formulated advanced mathematical methods for architecture definition and the use of model theory in engineering. In this article, an extension of the category of relations is defined by a semantically richer algebraic logic, denoted as CoR, suitable for analysis and design. This complements and extends the rigorous basis for our earlier work. CoR uses category theory coupled with the semantically richer logic as an architectural language for specifying structural views of concepts with concordant graphical and algebraic relational views for analysis and design. A radar case study is used to demonstrate methods for the application of these views to everyday engineering practice. CoR also addresses and can improve the expressiveness of modeling languages, such as SysMLv2. Schemata are defined to provide mathematical blueprints of the views. The intent is that CoR can be implemented in systems tools that are well-suited for engineering practitioners. This article offers a rigorous but practical platform for establishing a new generation of systems engineering methodologies, tools, and languages.
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