Towards the Use of Model-Driven Technologies in an Integral Software Development Process

A. Montalvo, P. Parra, Ó. Polo, Alberto Carrasco, Agustín Martínez-Hellín, S. Prieto
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引用次数: 1

Abstract

This work presents a model-driven engineering approach to the software development process for space applications following the standards ECSS-E-ST-40C and ECSS-Q-ST-80C. This approach is based on the use of models for the definition of the different constituent elements of the process, i.e. specification, requirements and validation procedures. The proposed approach provides development teams with a set of features that deliver an integrated solution to the software development process. These features include the use of model checking techniques to avoid inconsistencies between the different items and the ability to obtain input data from different sources, like telemetry and telecommand databases. Furthermore it enables the definition of transformations to generate different products such as component code, formatted output files, or configuration files for a ground support equipment software that allows the automatic execution of the defined functional tests. This approach has been validated through a case study in which a subset of the functionality of the software of the Instrument Control Unit of the Energy Particle Detector instrument on-board Solar Orbiter has been modelled.
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面向在集成软件开发过程中使用模型驱动技术
这项工作提出了一种模型驱动的工程方法,用于遵循标准ECSS-E-ST-40C和ECSS-Q-ST-80C的空间应用软件开发过程。这种方法是基于使用模型来定义过程的不同组成元素,即规范、需求和验证程序。所建议的方法为开发团队提供了一组特性,这些特性为软件开发过程提供了一个集成的解决方案。这些特性包括使用模型检查技术来避免不同项目之间的不一致,以及从不同来源(如遥测和远程命令数据库)获取输入数据的能力。此外,它使转换的定义能够生成不同的产品,例如组件代码、格式化的输出文件,或允许自动执行定义的功能测试的地面支持设备软件的配置文件。该方法已通过一个案例研究得到验证,该案例研究对太阳轨道飞行器上的能量粒子探测器仪器控制单元软件功能的一个子集进行了建模。
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