Applying model based systems engineering to NASA's space communications networks

K. Bhasin, Patrick Barnes, Jessica M. Reinert, Bert Golden
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引用次数: 3

Abstract

System engineering practices for complex systems and networks now require that requirement, architecture, and concept of operations product development teams, simultaneously harmonize their activities to provide timely, useful and cost-effective products. When dealing with complex systems of systems, traditional systems engineering methodology quickly falls short of achieving project objectives. This approach is encumbered by the use of a number of disparate hardware and software tools, spreadsheets and documents to grasp the concept of the network design and operation. In case of NASA's space communication networks, since the networks are geographically distributed, and so are its subject matter experts, the team is challenged to create a common language and tools to produce its products. Using Model Based Systems Engineering methods and tools allows for a unified representation of the system in a model that enables a highly related level of detail. To date, Program System Engineering (PSE) team has been able to model each network from their top-level operational activities and system functions down to the atomic level through relational modeling decomposition. These models allow for a better understanding of the relationships between NASA's stakeholders, internal organizations, and impacts to all related entities due to integration and sustainment of existing systems. Understanding the existing systems is essential to accurate and detailed study of integration options being considered. In this paper, we identify the challenges the PSE team faced in its quest to unify complex legacy space communications networks and their operational processes. We describe the initial approaches undertaken and the evolution toward model based system engineering applied to produce Space Communication and Navigation (SCaN) PSE products. We will demonstrate the practice of Model Based System Engineering applied to integrating space communication networks and the summary of its results and impact. We will highlight the insights gained by applying the Model Based System Engineering and provide recommendations for its applications and improvements.
将基于模型的系统工程应用于NASA的空间通信网络
复杂系统和网络的系统工程实践现在需要需求、架构和操作产品开发团队的概念,同时协调他们的活动,以提供及时的、有用的和具有成本效益的产品。当处理复杂的系统的系统时,传统的系统工程方法很快就不能达到项目目标。这种方法由于使用许多不同的硬件和软件工具、电子表格和文档来掌握网络设计和操作的概念而受到阻碍。以NASA的空间通信网络为例,由于网络是地理分布的,其主题专家也是如此,因此团队面临的挑战是创建一种通用语言和工具来生产其产品。使用基于模型的系统工程方法和工具允许在模型中对系统进行统一表示,从而实现高度相关的详细级别。到目前为止,程序系统工程(PSE)团队已经能够通过关系建模分解,从它们的顶级操作活动和系统功能到原子级别对每个网络进行建模。这些模型可以更好地理解NASA利益相关者、内部组织之间的关系,以及由于集成和维持现有系统而对所有相关实体的影响。了解现有系统对于准确和详细地研究正在考虑的集成选择是必不可少的。在本文中,我们确定了PSE团队在寻求统一复杂的遗留空间通信网络及其操作流程时所面临的挑战。我们描述了用于生产空间通信和导航(SCaN) PSE产品的基于模型的系统工程的最初方法和演变。我们将演示基于模型的系统工程应用于集成空间通信网络的实践,并总结其结果和影响。我们将强调通过应用基于模型的系统工程获得的见解,并为其应用和改进提供建议。
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