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Designing an integrated multi-echelon agile supply chain network: a hybrid taguchi-particle swarm optimization approach

机译:设计一个集成的多级敏捷供应链网络:一种混合式Taguchi粒子群优化方法

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The present paper attempts to explore the integration of production, distribution and logistics activities at the strategic decision making level where, the objective is to design a multi-echelon supply chain network considering agility as a key design criterion. The design network conceived here addresses a class of five echelons of supply chains including suppliers, plants, distribution centers, cross-docks and customer zones. The problem has been mathematically formulated as a multi-objective optimization model that aims to minimize the cost (fixed and variable) and maximizes the plant flexibility and volume flexibility. The notion of cross-dock has been introduced as an intermediate level between distribution centers and customer zones to increase the profitability of manufacturing and service industries. In order to solve the underlying problem, a novel algorithm entitled hybrid taguchi-particle swarm optimization (HTPSO) has been proposed that incorporates the characteristics of statistical design of experiments and random search techniques. The main idea is to integrate the fundamentals of taguchi method i.e. orthogonal array and signal to noise ratio (SNR) in the PSO meta-heuristic to minimize the effect of the causes of variations. The proposed model has been authenticated by undertaking problem instances of varying size. Extensive computational experiments are conducted to validate the same and also the efficacy of the proposed HTPSO algorithm. The results obtained reveal that proposed solution methodology is an effective approach to solve the underlying problem.
机译:本文试图在战略决策层面上探索生产,分销和物流活动的整合,其目标是设计一个以敏捷性为主要设计标准的多级供应链网络。这里构想的设计网络涉及一类五级供应链,包括供应商,工厂,配送中心,跨码头和客户区。该问题已通过数学公式化表示为一个多目标优化模型,旨在最小化成本(固定和可变)并最大化工厂灵活性和数量灵活性。跨码头的概念已被引入,作为配送中心和客户区域之间的中间层,以提高制造业和服务业的盈利能力。为了解决潜在的问题,已经提出了一种新的算法,称为混合Taguchi-粒子群优化(HTPSO),它结合了实验统计设计和随机搜索技术的特点。主要思想是在PSO元启发式方法中集成Taguchi方法的基本原理,即正交阵列和信噪比(SNR),以最大程度地减少变化原因的影响。所提出的模型已通过承担各种规模的问题实例进行了验证。进行了广泛的计算实验,以验证相同的结果以及所提出的HTPSO算法的有效性。获得的结果表明,提出的解决方案方法是解决潜在问题的有效方法。

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