作为“ESA_Lab@”计划一部分的并发工程教程的开发

Jennifer Hoffmann, Marlon Deutsch, R. Bertrand
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引用次数: 1

摘要

作为“ESA_Lab@”计划的一部分,在达姆施塔特工业大学机械工程系建立了一个并行工程设施。并行工程是在前阶段0/ a任务阶段设计复杂空间系统和任务的一个行之有效的概念。并行工程方法和过程由多学科团队和硬件和软件方面的特定基础设施支持,从而生成有效且时间高效的设计管理系统。该大学的“并行工程实验室”为研究人员和学生提供了一个探索和应用并行工程方法的环境,如(基于模型的)系统工程、工业4.0/空间4.0和空间交通管理。此外,与欧洲空间操作中心(也位于达姆施塔特)就同步工程应用于地面段和操作的合作已经开始。以并行工程实验室为中心的第一个新增课程将是“并行工程教程”,这是一个通过实践经验向新成立的硕士学位课程“航空航天工程”的学生介绍并行工程方法和工具的机会。“辅导课”是学位课程的选修课,提供许多不同领域的实践学习经验,成功完成后可获得4个学分。在“空间系统基础”和“空间系统与空间操作”讲座的基础上,为期一周的“并行工程教程”将挑战学生利用所学知识为预定的立方体卫星任务开发初步设计。本教程不仅将提供对任务空间段的各个子系统,并行工程过程和RHEA集团的相关软件“COMET”的更深入了解,而且还将与大学的一个学生协会建立协同作用,因为他们的项目之一是立方体卫星的开发。本文描述了教程开发的背景和方法,特别是“COMET”中可重用模型体系结构的结构,该结构是专门为此目的派生和实现的,并通过试点研究进行了验证
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development of a concurrent engineering tutorial as part of the “ESA_Lab@” initiative
As part of the “ESA_Lab@" initiative, a Concurrent Engineering facility has been constructed at the Mechanical Engineering department of Technical University Darmstadt. Concurrent Engineering is a well-proven concept for designing complex space systems and missions in the pre-phase 0/A mission phase. The Concurrent Engineering methodology and processes are enabled by a multidisciplinary team and specific infrastructure in terms of both hardware and software, which generate an effective and time efficient design management system. The university’s “Concurrent Engineering Lab” provides an environment for both researchers and students to explore and apply the Concurrent Engineering approach in areas such as (model-based) systems engineering, Industry 4.0/ Space 4.0, and space traffic management. Furthermore, collaboration with the European Space Operations Centre – also located in Darmstadt – regarding the application of Concurrent Engineering for Ground Segment & Operations has been started. The first addition to the university’s curriculum centered around the Concurrent Engineering Lab will be a “Concurrent Engineering Tutorial”, an opportunity to introduce the Concurrent Engineering methods and tools via hands-on experience to students of the newly established master’s degree program “Aerospace Engineering”. “Tutorials” are elective block courses of the degree program which offer practical learning experiences in many different fields, awarding 4 credit points upon successful completion. Building on the lectures "Fundamentals of Space Systems" and "Space Systems and Space Operations", the week-long “Concurrent Engineering Tutorial” will challenge students to use their acquired knowledge to develop a preliminary design for a predefined CubeSat mission. This Tutorial will not only provide a closer understanding of the individual subsystems of the space segment of a mission, the Concurrent Engineering process and the relevant software “COMET” by RHEA Group but will also create a synergy with a student association of the university, as one of their projects is the development of a CubeSat. This paper describes the background and approach to the development of the Tutorial, in particular the structure of the re-usable model architecture in “COMET”, which was specifically derived and implemented for this purpose and validated via a pilot study
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