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A data-driven reversible framework for achieving Sustainable Smart product-service systems

机译:用于实现可持续智能产品 - 服务系统的数据驱动的可逆框架

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摘要

Higher sustainability with extended product lifecycle is a tireless pursuit in companies' product design/development endeavours. In this regard, two prevailing concepts, namely the smart circular system and smart product-service system (Smart PSS), have been introduced, respectively. However, most existing studies only focus on the sustainability of physical materials and components, without considering the cyber-physical resources as a whole, let alone an integrated strategy towards the so-called Sustainable Smart PSS. To fill the gap, this paper discusses the key features in Sustainable Smart PSS development from a broadened scope of cyber-physical resources management. A data-driven reversible framework is hereby proposed to sustainably exploit high-value and context-dependent information/knowledge in the development of Sustainable Smart PSS. A four-step context-aware process in the framework, including requirement elicitation, solution recommendation, solution evaluation, and knowledge evolvement, is further introduced to support the decision-making and optimization along the extended or circular lifecycle. An illustrative example is depicted in the sustainable development of a smart 3D printer, which validates the feasibility and advantages of the proposed framework. As an explorative study, it is hoped that this work provides useful insights for Smart PSS development with sustainability concerns in a cyber-physical environment. (c) 2020 Elsevier Ltd. All rights reserved.
机译:延长产品生命周期的更高可持续性是公司产品设计/发展努力的不懈追求。在这方面,分别介绍了两个现行概念,即智能循环系统和智能产品 - 服务系统(智能产品 - 智能产品 - 服务系统(SMART PSS)。然而,大多数现有研究只关注物理材料和组件的可持续性,而不考虑整个网络物质资源,更不用说朝着所谓的可持续智能PSS综合战略。为了填补差距,本文讨论了可持续智能PSS开发的关键特征,从扩大的网络物理资源管理范围。特此建议在可持续开发可持续智能PSS开发中的高价值和上下文依赖信息/知识的数据驱动的可逆框架。进一步引入了框架中的四步背景感知过程,包括要求诱惑,解决方案建议,解决方案评估和知识演变,以支持沿着延长或圆形生命周期的决策和优化。在智能3D打印机的可持续发展中示出了说明性示例,其验证了所提出的框架的可行性和优点。作为一项探索性研究,希望这项工作为智能PSS开发提供了具有网络物理环境的可持续性问题的有用见解。 (c)2020 elestvier有限公司保留所有权利。

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