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Human Factors in the Unified Architecture Framework Applied to Space Situational Awareness

机译:统一建筑框架中的人为因素适用于太空情境意识

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Driven by the ever-increasing complexity of human endeavors, the field of systems engineering is in the midst of a revolution of its practices. One well-developed aspect of this revolution is the replacement of document-based systems engineering with transdisciplinary model-based systems engineering in which all technical aspects are brought into the model. Remaining work in this field is the inclusion of all aspects of the enterprise related to the system-of-interest within the model, hence architectural frameworks are expanding downward to include system aspects. The Unified Architecture Framework (UAF) is directly expressible in Systems Modeling Language (SysML), in contrast with its predecessors. The integration of enterprise architecture frameworks with system specific modeling resolves the perennial divide within systems engineering: how to represent humans (e.g. operators) in system engineering products. Whether or not humans are modeled within any system boundary becomes less crucial as engineering disciplines begin to understand that humans are clearly part of the enterprise. If the UAF did nothing but unify the systems engineering community in a common stance on human factors, its value would be hard to overstate. This report presents a case study exploring the design of a Collaborative Command System (CCS) for operators of a Space Situational Awareness (SSA) system. The study utilized MagicDraw's Cameo System Modeler, as well as its new UAF perspective plug-in. The study evaluated a baseline CCS against the criteria of requirement coverage, human interaction coverage, human capacity coverage, and human to end-user coverage as driven by the UAF. This evaluation revealed that the model met the criteria for requirement coverage as well as the human interaction coverage, but failed to meet both the human capacity coverage and human to end-user coverage in its current form. The UAF therefore offered significant benefit by illustrating insufficiencies in the design as well as suggesting what future design refinements and enhancements should be addressed.
机译:由于人类努力的不断增长的复杂性驱动,系统工程领域是在其实践的革命中。该革命的一个发达的方面是用基于跨学科模型的系统工程更换基于文档的系统工程,其中所有技术方面都进入了模型。剩余工作在该领域是将企业的所有方面列入模型内有关的生物系统,因此架构框架正在向下扩展以包括系统方面。统一的架构框架(UAF)与系统建模语言(SYSML)直接表示,与其前辈相比。企业架构框架与系统特定建模的集成解决了系统工程中的多年生划分:如何在系统工程产品中代表人类(例如运营商)。随着工程学科开始了解人类显然是企业的一部分,人类是否在任何系统边界内都变得不那么重要。如果UAF没有任何统一系统工程社区的人类因素的共同姿态,那么它的价值将难以夸大。本报告提出了一个案例研究,探讨了空间情境感知(SSA)系统的运营商的协同命令系统(CCS)的设计。该研究利用了MagicDraw的灵感系统建模器,以及其新的UAF透视插件。该研究评估了基线CC,以防止由UAF驱动的需求覆盖,人类互动覆盖率,人力容量覆盖和人类覆盖的标准。该评估透露,该模型符合要求覆盖的标准以及人为互动覆盖,但未能满足其目前形式的人体容量覆盖率和人类覆盖。因此,UAF通过说明设计中的不足以及建议应解决未来的设计改进和增强功能来提供显着的益处。

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