概念系统设计中的总线因素:保护设计过程不受重大区域和世界事件的影响

Douglas L. Van Bossuyt, R. Arlitt
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引用次数: 0

摘要

我们介绍了一种方法,以帮助防止和减轻可能破坏系统设计和制造过程的主要区域和全球事件的可能后果。该方法的目的是在系统设计的概念阶段,当功能模型已经开发和组件解决方案正在选择。破坏性事件,如飞机失事导致同一家公司的许多工程师丧生,疾病爆发导致与一个工业部门有关的许多人死亡或暂时致残,这些人定期前往同一次会议,地缘政治事件征收关税或完全停止与供应关键部件的国家的贸易,以及许多其他类似的物理和虚拟事件,都可能严重延迟或破坏系统设计过程。通过比较可选的实施例、组件和低级功能解决方案,可以确定更好地通过总线因素的解决方案,其中没有一个破坏性事件会导致系统设计和制造过程的主要延迟或中断。我们提出了一个简化的可再生能源发电和存储系统的案例研究,用于住宅使用来演示该方法。虽然从业者立即采用的一些挑战存在,但我们相信该方法具有显著改进系统设计过程的潜力,以便从设计和制造的重大破坏性事件的角度来看,系统是按计划和按预算设计、制造和交付的。
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The Bus Factor in Conceptual System Design: Protecting a Design Process Against Major Regional and World Events
We introduce a method to help protect against and mitigate possible consequences of major regional and global events that can disrupt a system design and manufacturing process. The method is intended to be used during the conceptual phase of system design when functional models have been developed and component solutions are being chosen. Disruptive events such as plane crashes killing many engineers from one company traveling together, disease outbreaks killing or temporarily disabling many people associated with one industrial sector who travel to the same conference regularly, geopolitical events that impose tariffs or complete cessation of trade with a country that supplies a critical component, and many other similar physical and virtual events can significantly delay or disrupt a system design process. By comparing alternative embodiment, component, and low-level functional solutions, solutions can be identified that better pass the bus factor where no one disruptive event will cause a major delay or disruption to a system design and manufacturing process. We present a simplified case study of a renewable energy generation and storage system intended for residential use to demonstrate the method. While some challenges to immediate adoption by practitioners exist, we believe the method has the potential to significantly improve system design processes so that systems are designed, manufactured, and delivered on schedule and on budget from the perspective of significant disruptive events to design and manufacturing.
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