基于数字孪生系统的综合能源系统设计计算自动化

V. Stennikov, E. Barakhtenko, D. V. Sokolov, G. Mayorov
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引用次数: 0

摘要

在单独运行的传统能源系统基础上建设综合能源系统(IES),可确保向用户提供更高效、更可靠的能源。综合能源系统是复杂的设计对象。数字孪生是一种工具,可以将设计所需的所有工具集成到一个信息空间中。实现 IES 数字孪生的软件工具以及为其设计而开发的软件工具在组织计算时需要高度的灵活性,这是因为需要模拟各种设备,并涉及一系列广泛的方法和数学模型。自动构建计算子系统是克服上述困难的有效解决方案。文章提出了一种方法论方法,用于自动构建 IES 数字孪生计算子系统。根据提出的方法,自动化构建是在使用现代元编程工具的软件平台基础上进行的。在构建过程中,采用了模型驱动工程的概念,并使用了本体形式化的知识。文章概述了所建议的自动构建国际空间站数字孪生计算子系统的方法的组成部分,其中包括:软件平台开发原则;软件平台架构;自动构建数字孪生计算子系统的技术;确保软件组件通用性的原则。通过实际应用所提出的方法论而获得的数字孪生,可以在虚拟空间中对 IES 进行计算机和数学建模,探索其结构的各种配置。在国际空间环境设计数字孪生模型的框架内实施建模,可以采用灵活有效的方法解决国际空间环境设计问题,并获得设计建议,这些建议可在建造真实的国际空间环境设计时实施。关键词:方法论;数字孪生;计算自动化;编程自动化;模型驱动工程;元编程;本体;综合能源系统
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Automation of Calculations in the Design of an Integrated Energy System Based on its Digital Twin
The construction of integrated energy systems (IES) based on traditional energy systems that operate separately ensures higher efficiency and reliability of energy supply to consumers. IES are complex objects for design. The digital twin is a tool that allows one to integrate all the tools necessary for design in a single information space. Software tools that implement the digital twin of IES and are developed for their design require high flexibility in organizing calculations, which is due to the need to simulate a variety of equipment and involve a wide set of methods and mathematical models. Automating the construction of the computing subsystem is an effective solution to overcome the above difficulties. The article proposes a methodological approach to automating the construction of the computing subsystem of the digital twin of the IES. In accordance with the proposed approach, automated construction is performed on the basis of a software platform using modern metaprogramming tools. When building, the concept of Model-Driven Engineering is implemented and knowledge formalized in the form of ontologies is used. The article outlines the components of the proposed methodological approach to automating the construction of the computing subsystem of the digital twin of the IES, which include the following: principles of software platform development; software platform architecture; technique for automated construction of the digital twin computing subsystem; principles for ensuring the universality of software components. The digital twin obtained as a result of the practical application of the proposed methodological approach makes it possible to carry out computer and mathematical modeling of the IES in the virtual space, exploring various configurations of its construction. The implementation of modeling within the framework of the digital twin of IES makes it possible to implement flexible and efficient approaches to solving the problems of designing IES and to obtain design recommendations that can be implemented when building real IES. Keywords: methodological approach, digital twin, automation of computing, automation of programming, Model-Driven Engineering, metaprogramming, ontology, integrated energy system
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