Modular Concurrent Engineering Models: Enabling Alternative Models in Conceptual Satellite Design

B. Lewis, J. Lang, R. Jolly
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引用次数: 7

Abstract

Design groups have worked for many years to provide rapid development and modeling of conceptual space vehicles using Concurrent Engineering Models (CEMs). A large number of design tools have been crafted to meet different aims and goals within the systems engineering community.The challenges to build upon these previous models to generate a flexible CEM capable of using interchangeable modules that model the subsystems of a space vehicle are described in this paper. Rather than redeveloping entire CEMs to fit specific purposes, users and developers can focus their attention on crafting only the new modules they need while making use of other pre-existing modules. In this way, the Modular CEM can take advantage of many of the lessons learned in previous CEM development efforts. The new Modular CEM is designed to incorporate some error checking to help the systems engineer correctly use the model, to facilitate easy addition or extraction of data into or out of the model, and to incorporate improvements in ease of use and ease of development. This paper describes the relationship of this model to previously developed CEMs, the modeling approach taken by the design team, the current state of the Modular CEM, and describes applications where the Modular CEM has been applied.
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模块化并行工程模型:实现卫星概念设计中的备选模型
设计团队多年来一直致力于使用并行工程模型(CEMs)提供概念空间飞行器的快速开发和建模。为了满足系统工程社区内不同的目的和目标,已经精心设计了大量的设计工具。本文描述了在这些先前模型的基础上构建灵活的CEM的挑战,该CEM能够使用可互换的模块对空间飞行器的子系统进行建模。用户和开发人员无需重新开发整个CEMs以满足特定目的,而是可以将注意力集中在制作所需的新模块上,同时使用其他已有模块。通过这种方式,模块化CEM可以利用在以前的CEM开发工作中获得的许多经验教训。新的模块化CEM旨在包含一些错误检查,以帮助系统工程师正确使用模型,方便向模型中添加或提取数据,并在易用性和开发便利性方面进行改进。本文描述了该模型与先前开发的CEM的关系,设计团队采用的建模方法,模块化CEM的当前状态,并描述了模块化CEM的应用。
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