Scenarios for digital twin deployment in healthcare facilities management

IF 2.2 Q3 MANAGEMENT Journal of Facilities Management Pub Date : 2023-04-14 DOI:10.1108/jfm-10-2022-0107
Obinna C. Madubuike, C. Anumba, E. Agapaki
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Abstract

Purpose This paper aims to focus on identifying key health-care issues amenable to digital twin (DT) approach. It starts with a description of the concept and enabling technologies of a DT and then discusses potential applications of DT solutions in healthcare facilities management (FM) using four different scenarios. The scenario planning focused on monitoring and controlling the heating, ventilation, and air-conditioning system in real-time; monitoring indoor air quality (IAQ) to monitor the performance of medical equipment; monitoring and tracking pulsed light for SARS-Cov-2; and monitoring the performance of medical equipment affected by radio frequency interference (RFI). Design/methodology/approach The importance of a healthcare facility, its systems and equipment necessitates an effective FM practice. However, the FM practices adopted have several areas for improvement, including the lack of effective real-time updates on performance status, asset tracking, bi-directional coordination of changes in the physical facilities and the computational resources that support and monitor them. Consequently, there is a need for more intelligent and holistic FM systems. We propose a DT which possesses the key features, such as real-time updates and bi-directional coordination, which can address the shortcomings in healthcare FM. DT represents a virtual model of a physical component and replicates the physical data and behavior in all instances. The replication is attained using sensors to obtain data from the physical component and replicating the physical component's behavior through data analysis and simulation. This paper focused on identifying key healthcare issues amenable to DT approach. It starts with a description of the concept and enabling technologies of a DT and then discusses potential applications of DT solutions in healthcare FM using four different scenarios. Findings The scenarios were validated by industry experts and concluded that the scenarios offer significant potential benefits for the deployment of DT in healthcare FM such as monitoring facilities’ performance in real-time and improving visualization by integrating the 3D model. Research limitations/implications In addition to inadequate literature addressing healthcare FM, the study was also limited to one of the healthcare facilities of a large public university, and the scope of the study was limited to IAQ including pressure, relative humidity, carbon dioxide and temperature. Additionally, the study showed the potential benefits of DT application in healthcare FM using various scenarios that DT experts validated. Practical implications The study shows the practical implication using the various validated scenarios and identified enabling technologies. The combination and implementation of those mentioned above would create a system that can effectively help manage facilities and improve facilities' performances. Social implications The only identifiable social solution is that the proposed system in this study can manually be overridden to prevent absolute autonomous control of the smart system in cases when needed. Originality/value To the best of the authors’ knowledge, this is the only study that has addressed healthcare FM using the DT approach. This research is an excerpt from an ongoing dissertation.
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医疗保健设施管理中数字孪生部署的场景
目的本文旨在重点确定适用于数字孪生(DT)方法的关键医疗保健问题。它首先描述了DT的概念和使能技术,然后使用四种不同的场景讨论了DT解决方案在医疗设施管理(FM)中的潜在应用。场景规划侧重于实时监控供暖、通风和空调系统;监测室内空气质量(IAQ),以监测医疗设备的性能;监测和追踪严重急性呼吸系统综合征冠状病毒2型的脉冲光;以及监测受射频干扰(RFI)影响的医疗设备的性能。设计/方法/方法医疗机构、其系统和设备的重要性需要有效的FM实践。然而,所采用的FM实践有几个方面需要改进,包括缺乏对性能状态、资产跟踪、物理设施变化的双向协调以及支持和监控物理设施的计算资源的有效实时更新。因此,需要更智能和更全面的调频系统。我们提出了一种DT,它具有实时更新和双向协调等关键功能,可以解决医疗FM中的缺点。DT表示物理组件的虚拟模型,并在所有情况下复制物理数据和行为。复制是使用传感器从物理组件获取数据并通过数据分析和模拟复制物理组件的行为来实现的。本文的重点是确定适合DT方法的关键医疗保健问题。它首先描述了DT的概念和使能技术,然后使用四种不同的场景讨论了DT解决方案在医疗FM中的潜在应用。发现行业专家对这些场景进行了验证,得出的结论是,这些场景为DT在医疗FM中的部署提供了显著的潜在好处,例如实时监测设施的性能,并通过集成3D模型改进可视化。研究局限性/含义除了关于医疗保健FM的文献不足外,该研究还仅限于一所大型公立大学的一家医疗机构,研究范围仅限于室内空气质量,包括压力、相对湿度、二氧化碳和温度。此外,该研究使用DT专家验证的各种场景,展示了DT在医疗保健FM中应用的潜在好处。实际含义该研究使用各种经过验证的场景和已确定的使能技术展示了实际含义。上述内容的结合和实施将创建一个能够有效帮助管理设施和提高设施性能的系统。社会含义唯一可识别的社会解决方案是,本研究中提出的系统可以手动覆盖,以防止在需要时对智能系统进行绝对自主控制。原创性/价值据作者所知,这是唯一一项使用DT方法解决医疗保健FM的研究。这项研究摘录自一篇正在进行的论文。
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来源期刊
CiteScore
4.30
自引率
15.80%
发文量
56
期刊介绍: Journal of Facilities Management is a strategic level journal for Heads of Facilities and Corporate Real Estate. Guided by its international and expert Editorial Board, Journal of Facilities Management publishes high-quality, authoritative, and detailed analysis, briefings and case studies on how facilities can and do play a vital part in helping deliver corporate strategy. This quarterly publication features contributions from leading practitioners and thinkers in the field of Facilities Management, from some of the leading companies, government institutions, and universities in the world. The journal features a combination of theoretical and practical articles, complemented by a wide range of case studies and regular features, identifying key implications for senior practitioners in Facilities Management.
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