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A reliable location model for heterogeneous systems under partial capacity losses

机译:部分容量损失下异构系统的可靠位置模型

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Due to the interdependency between multiple infrastructure systems, the performance of a facility may depend on the resources or supplies received from other facilities. However, cross-system interdependence has seldom been studied in the location design context, probably due to the lack of a concise model describing interdependence across heterogeneous systems. This paper proposes a new heterogeneous flow scheme to describe cross-system interdependence. This scheme has two features distinguished from existing models in describing an interdependent facility location problem. First, it is a simple linear model upon which a compact facility location model can be built. Secondly, it relaxes the need to maintain flow conservation between different systems and is suitable in describing heterogeneous systems that take in and output different resources or services. Built on this scheme, this paper proposes a reliable location design model for a nexus of interdependent infrastructure systems. This model aims to locate the optimal facility locations in multiple heterogeneous systems to balance the tradeoff between the facility investment and the expected nexus operation performance. Different from other reliable facility location models, this expected performance captures interdependence among heterogeneous systems due to the resource input-output relationships. The consideration of continuous partial capacity losses complements the reliable location literature that mainly focuses on binary disruptions. Two numerical examples are conducted for investigating features and applications of the proposed model. The results indicate that with a standard off-the-shelf integer programming solver, the proposed model is able to solve optimal facility location design for problem instances of realistic scales to the near-optimum solutions with optimality gap assurance. Sensitivity analyses of key parameters indicate that improving facility capacity and reducing interdependency between systems can mitigate impacts of facility capacity losses and reduce the overall system cost.
机译:由于多个基础设施系统之间的相互依赖性,设施的性能可能取决于从其他设施收到的资源或供应。但是,很少在位置设计上下文中研究跨系统的相互依赖性,这可能是由于缺乏描述异构系统之间的相互依赖性的简洁模型所致。本文提出了一种新的异构流方案来描述跨系统的相互依赖性。在描述相互依存的设施位置问题时,该方案具有与现有模型不同的两个特征。首先,它是一个简单的线性模型,可以在其上构建紧凑的设施位置模型。其次,它放宽了在不同系统之间保持流量节约的需求,并且适合描述吸收和输出不同资源或服务的异构系统。在此方案的基础上,本文为相互依赖的基础设施系统之间的联系提出了可靠的位置设计模型。该模型旨在在多个异构系统中定位最佳设施位置,以平衡设施投资与预期联系运营绩效之间的权衡。与其他可靠的设施位置模型不同,由于资源的输入-输出关系,这种预期的性能捕获了异构系统之间的相互依赖性。连续的部分容量损失的考虑补充了主要集中于二进制破坏的可靠位置文献。进行了两个数值示例,以研究所提出模型的特征和应用。结果表明,使用标准的现成整数规划求解器,该模型能够将具有实际规模的问题实例的最佳设施位置设计求解为具有最佳缺口保证的接近最佳解决方案。关键参数的敏感性分析表明,提高设施容量并减少系统之间的相互依赖性可以减轻设施容量损失的影响并降低总体系统成本。

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