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Digital Twin-Driven Human-Centered Design Frameworks for Meeting Sustainability Objectives

机译:数字双向人以人为本的设计框架,可满足可持续发展目标

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This paper presents a manifesto for the future design of human-made systems and engage this reflection by promoting a computational human factors engineering (HFE) approach. In this paper, we concentrate on the fact that human well-being and sustainability objectives are inseparable. Thus, this paper's primary focus is to demonstrate a simulation-based computational design methodology, digital human-in-the-loop (D-HIL), which utilizes the digital human modeling (DHM) platform to inject HFE design principles early in design. The D-HIL methodology enables human, product, and systems data to be coupled with computational toolkits; thus, bringing opportunities for facilitating ergonomics decision-making to be part of the digital twin (DT)-driven design. We presented two frameworks originating from our recent work in D-HIL research: (1) prototyping toolbox and (2) human error and functional failure reasoning (HEFFR) as means for realizing sustainability goals through DT-based design. While our preliminary studies show that both tools show promise in terms of realizing the sustainability goals, they are limited to only goals that relate to cost. In our future work, we plan to explore models and computational tools from non-traditional engineering domains to expand our frameworks' scope to realizing sustainability goals that go beyond cost estimations.
机译:本文介绍了未来人类制造系统设计的宣言,并通过促进计算人体因素工程(HFE)方法来实现这一反射。在本文中,我们专注于人类福祉和可持续性目标是不可分割的事实。因此,本文的主要焦点是展示基于模拟的计算设计方法,数字人载(D-HIL),其利用数字人类建模(DHM)平台在设计时早期注入HFE设计原理。 D-HIL方法可以使人员,产品和系统数据与计算工具包耦合;因此,为促进人体工程学决策提供了机会,成为数字双胞胎(DT)驱动设计的一部分。我们提出了两个源自我们最近的D-HIL研究工作的框架:(1)原型工具箱和(2)人为错误和功能故障推理(Heffr)作为通过基于DT的设计实现可持续发展目标的手段。虽然我们的初步研究表明,两种工具都以实现可持续发展目标表示承诺,但它们仅限于与成本相关的目标。在我们未来的工作中,我们计划从非传统工程域中探索模型和计算工具,扩大我们的框架范围,以实现超出成本估算的可持续发展目标。

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