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Hybrid optimizers to solve a tri-level programming model for a tire closed-loop supply chain network design problem

机译:混合优化器来解决轮胎闭环供应链网络设计问题的三级编程模型

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摘要

The Closed-loop Supply Chain (CLSC) is one way to collect and recycle scraped tires. CLSC consists of a set of suppliers, manufacturers, distributors and customers in a forward system. Collectors and recyclers are formed a reverse one as well. The decisions in such systems are adopted in a hierarchy. Regarding this issue, this study develops a tri-level programming model to design the location-allocation of the tire CLSC for the first time. The proposed model is formulated on the static Stackelberg game between manufacturers, distributors and collectors in the framework of CLSC. The performance of the current exact solutions for this problem suffers from degraded performance when solving large-scale problems. To alleviate this drawback, this study proposes a number of new hybrid optimizers by considering the benefits of recent metaheuristics. An extensive comparative study confirms the efficiency of developed model and the performance of the hybrid optimizers proposed when solving the large-scale problems. (C) 2018 Elsevier B.V. All rights reserved.
机译:闭环供应链(CLSC)是收集和回收刮擦轮胎的一种方法。 CLSC包括一套供应商,制造商,经销商和前向系统的客户组成。收藏家和回收商也形成了反向的。这些系统中的决定是在层次结构中采用的。关于此问题,本研究开发了三级编程模型,首次设计了轮胎CLSC的位置分配。拟议的模型是在CLSC框架中制造商,分销商和收藏家之间的静态Stackelberg游戏。当前当前精确解决方案的性能在解决大规模问题时遭受了降低的性能。为了缓解这项缺点,本研究通过考虑最近的近期遗传学的益处提出了许多新的混合优化器。广泛的比较研究证实了在解决大规模问题时提出的开发模型的效率和混合优化器的性能。 (c)2018 Elsevier B.v.保留所有权利。

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