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Integrated Modeling for Location Analysis

机译:位置分析的集成建模

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摘要

Delivery of products and services relies on well-managed operations. In designing large-scaled supply chain and service systems, locations of key facilities are a critical decision, as these facilities form the backbone of operations of these systems. For example, a key to effective supply chain management is the deployment of a structurally well-designed facility network, consisting of plants, warehouses, retail stores, etc. The aim of the study of facility location is to develop analytical methodologies to inform the planning decisions for evaluating and selecting siting plans for these facilities that ensure both convenient provision of (or access to) products and services by customers and users, as well as efficient operations (i.e., low operating costs). Facility location and network design has long been an integral topic of study in operations management. In this literature, one may observe that earlier works mainly focused on a strategic view of accessibility and operational costs, using performance metrics based on strategic distances between the chosen facilities and customers or suppliers. This traditional approach often neglects the impacts of future tactical and operational activities to be conducted in the network, and optimizes objectives that do not fully reflect the long-term performance of the facility network. In attempt to rectify this shortcoming, researchers have proposed an integrated modeling approach that enhances the classical models by jointly considering strategic, tactical and operational activities in facility systems. By integrating tactical and operational characteristics of facility networks into strategic design decisions, the integrated approach offers a more balanced perspective on the strategic trade-offs in network design. As shown in a series of recent research, this integrated modeling approach can potentially deliver new insights into facility location problems in a variety of contexts, e.g., supply chain network design, deployment of health care facilities, and design of storage systems for renewable power. In this monograph, we perform a review of some important concepts in this emerging stream of literature. Motivated by supply chain design applications, we first discuss the basic modeling concepts, including both mathematical programming-based and analytical approaches for modeling. While simulation-optimization approaches can be used for analyzing location problems, they are not covered in the scope of this monograph. We also review techniques adopted in the literature to analyze and solve these classes of location models. This is aimed to serve as a reference for readers (especially students) who like to develop their own models but are less familiar with this line of research. Furthermore, we review a number of applications of this line of research, covering both applications in supply chain contexts and other emerging domains, such as sustainable transportation, energy and health care.
机译:产品和服务的交付依赖于管理良好的运营。在设计大规模供应链和服务系统时,关键设施的位置是一个关键的决定,因为这些设施构成了这些系统的运营骨干。例如,有效供应链管理的关键是部署结构合理的设施网络,其中包括工厂,仓库,零售商店等。研究设施位置的目的是开发分析方法以为规划提供依据评估和选择这些设施的选址计划的决定,既要确保客户和用户方便地提供(或使用)产品和服务,又要确保有效的运营(即低运营成本)。设施位置和网络设计长期以来一直是运营管理中不可或缺的研究主题。在该文献中,人们可能会发现,较早的工作主要基于基于所选设施与客户或供应商之间的战略距离的绩效指标,重点关注可访问性和运营成本的战略观点。这种传统方法常常忽略了网络中未来战术和运营活动的影响,并优化了无法完全反映设施网络长期性能的目标。为了纠正这一缺点,研究人员提出了一种集成建模方法,该方法通过共同考虑设施系统中的战略,战术和运营活动来增强经典模型。通过将设施网络的战术和运营特征整合到战略设计决策中,集成方法为网络设计中的战略权衡提供了更加平衡的观点。如最近的一系列研究所示,这种集成的建模方法可以在各种情况下(例如供应链网络设计,医疗保健设施的部署以及可再生能源的存储系统设计)提供对设施位置问题的新见解。在本专着中,我们对新兴文学中的一些重要概念进行了回顾。受供应链设计应用程序的激励,我们首先讨论基本的建模概念,包括基于数学编程的建模方法和分析方法。虽然仿真优化方法可用于分析位置问题,但本专论的范围未涵盖它们。我们还将回顾文献中采用的技术来分析和解决这些类别的位置模型。旨在为喜欢开发自己的模型但对这一研究领域不太熟悉的读者(尤其是学生)提供参考。此外,我们回顾了该研究领域的许多应用,涵盖了供应链环境和其他新兴领域的应用,例如可持续交通,能源和医疗保健。

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