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Evaluating the Productive Efficiency of Dynamical Systems

机译:评估动力系统的生产效率

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Engineering managers are typically concerned with the assessment and improvement of system performance. In the literature, analytical approaches have been proposed not only for the purpose of computing and estimating performance measures, but also for linking these performance measures to performance improvement strategies. In reality, organizational and/or system efficiency performance is dynamic, nonlinear in its relationship to key production drivers, and a function of multiple/complex interactions and feedback mechanisms. This paper introduces a methodological approach that combines the system dynamics (SDs) modeling paradigm with the concepts taken from the measurement of productive efficiency so as to evaluate dynamical systems. In this research, the SD paradigm is coupled with the fundamental assumptions of production theory in order to evaluate productive efficiency performance. As a result, a structure within the SD model is introduced that computes efficiency performance scores based on a hill-climbing optimization procedure. The structure is illustrated using an electric utility example described by Kopp, 1981, where constrained optimization results are not only replicated but also the path to achieve optimal dynamic system performance is found. An example is provided as to how this structure can be used to facilitate policy decisions within a technology management environment where investments are made in new technologies.
机译:工程经理通常关心系统性能的评估和改进。在文献中,已经提出了分析方法,不仅用于计算和估计绩效指标,而且还用于将这些绩效指标与绩效改进策略联系起来。实际上,组织和/或系统效率绩效是动态的,与主要生产驱动因素的关系是非线性的,并且是多种/复杂的交互作用和反馈机制的函数。本文介绍了一种方法学方法,该方法将系统动力学(SD)建模范例与从生产效率测量中获得的概念相结合,以评估动力学系统。在这项研究中,SD范式与生产理论的基本假设相结合,以评估生产效率绩效。结果,引入了SD模型中的结构,该结构基于爬山优化过程来计算效率绩效得分。使用Kopp,1981年描述的电力应用示例来说明该结构,在该示例中,不仅复制了约束优化结果,而且找到了实现最佳动态系统性能的途径。提供了一个示例,说明如何使用此结构来促进对新技术进行投资的技术管理环境中的政策决策。

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