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作为跨学科研究推动者的混合模型。

Hybrid models as transdisciplinary research enablers.

作者信息

Tolk Andreas, Harper Alison, Mustafee Navonil

机构信息

The MITRE Corporation, 1001 Research Park Blvd #220, Charlottesville, VA 22911, USA.

The Centre for Simulation, Analytics and Modelling (CSAM), University of Exeter Business School, Rennes Drive, Exeter EX4 4PU, UK.

出版信息

Eur J Oper Res. 2021 Jun 16;291(3):1075-1090. doi: 10.1016/j.ejor.2020.10.010. Epub 2020 Oct 15.

DOI:10.1016/j.ejor.2020.10.010
PMID:33078041
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC7558239/
Abstract

Modelling and simulation (M&S) techniques are frequently used in Operations Research (OR) to aid decision-making. With growing complexity of systems to be modelled, an increasing number of studies now apply multiple M&S techniques or hybrid simulation (HS) to represent the underlying system of interest. A parallel but related theme of research is extending the HS approach to include the development of hybrid models (HM). HM extends the M&S discipline by combining theories, methods and tools from across disciplines and applying multidisciplinary, interdisciplinary and transdisciplinary solutions to practice. In the broader OR literature, there are numerous examples of cross-disciplinary approaches in model development. However, within M&S, there is limited evidence of the application of conjoined methods for building HM. Where a stream of such research does exist, the integration of approaches is mostly at a technical level. In this paper, we argue that HM requires cross-disciplinary research engagement and a conceptual framework. The framework will enable the synthesis of discipline-specific methods and techniques, further cross-disciplinary research within the M&S community, and will serve as a transcending framework for the transdisciplinary alignment of M&S research with domain knowledge, hypotheses and theories from diverse disciplines. The framework will support the development of new composable HM methods, tools and applications. Although our framework is built around M&S literature, it is generally applicable to other disciplines, especially those with a computational element. The objective is to motivate a transdisciplinarity-enabling framework that supports the collaboration of research efforts from multiple disciplines, allowing them to grow into transdisciplinary research.

摘要

建模与仿真(M&S)技术在运筹学(OR)中经常被用于辅助决策。随着待建模系统的复杂性不断增加,现在越来越多的研究应用多种M&S技术或混合仿真(HS)来表示感兴趣的基础系统。一个与之平行但相关的研究主题是将HS方法扩展到包括混合模型(HM)的开发。HM通过整合来自不同学科的理论、方法和工具,并将多学科、跨学科和超学科的解决方案应用于实践,扩展了M&S学科。在更广泛的运筹学文献中,模型开发中有许多跨学科方法的例子。然而,在M&S领域内,构建HM的联合方法的应用证据有限。在确实存在此类研究的地方,方法的整合大多处于技术层面。在本文中,我们认为HM需要跨学科的研究参与和一个概念框架。该框架将能够综合特定学科的方法和技术,在M&S社区内进一步开展跨学科研究,并将作为一个超越性的框架,用于使M&S研究与来自不同学科的领域知识、假设和理论进行跨学科协调。该框架将支持新的可组合HM方法、工具和应用的开发。虽然我们的框架是围绕M&S文献构建的,但它通常适用于其他学科,特别是那些具有计算元素的学科。目标是激发一个支持跨学科的框架,该框架支持来自多个学科的研究工作的合作,使它们发展成为跨学科研究。

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