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A framework for designing robust supply chains considering product development issues

机译:考虑产品开发问题的设计稳健供应链的框架

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The primary objective of the design for supply chain (DFSC) is the selection of an appropriate product family. Moreover, it deals with the selection of the optimal combination among the different conflicting criteria while making a trade-off between the supply chain cost, sales profit and the product design complexities. In this research, to address the DFSC issues a product platform approach has been proposed which amalgamates the component modularity as well as the function modularity in the product design. The optimisation model proposed in this paper for the product development and the supply chain design is based on a generic bill of materials (GBOM) representation. The complete framework includes vital decision-making needed for designing a robust supply chain such as locating plants to alleviate the likely dominance of production cost and market mediation cost on product variety and imparting process flexibility of the located plants. The optimisation model proposed in this paper, models the supply chain cost, sales profit and product design complexity as three criteria that altogether determine the robustness of the supply chain and the underlying product development approach. Certain parameters like process flexibility, flow types and drivers of the product variety dominance have been controlled in the design framework. To resolve the complexity of the proposed model a genetic algorithm (GA) technique has been proposed. The proposed GA adopts an arithmetic crossover, a dynamic mutation and a variable penalty strategy to produce optimal results in a very short computational time. To validate the proposed model, a simulated case study of the wiring harness supplier of an AGV manufacturer has been studied.
机译:供应链设计(DFSC)的主要目标是选择合适的产品系列。此外,它还处理了不同冲突标准之间最佳组合的选择,同时在供应链成本,销售利润和产品设计复杂性之间进行了权衡。在这项研究中,为了解决DFSC问题,提出了一种产品平台方法,该方法将产品设计中的组件模块化以及功能模块化融合在一起。本文针对产品开发和供应链设计提出的优化模型基于通用物料清单(GBOM)表示。完整的框架包括设计稳健的供应链所需的重要决策,例如定位工厂以减轻生产成本和市场调解成本对产品品种的主导地位,并赋予所定位工厂以过程灵活性。本文提出的优化模型将供应链成本,销售利润和产品设计复杂性建模为三个标准,它们共同决定了供应链的稳健性和基础产品开发方法。在设计框架中已经控制了某些参数,例如过程灵活性,流程类型和产品品种优势的驱动力。为了解决所提出模型的复杂性,提出了遗传算法(GA)技术。提出的遗传算法采用算术交叉,动态突变和可变罚分策略,可以在很短的计算时间内产生最佳结果。为了验证所提出的模型,已经研究了AGV制造商的线束供应商的模拟案例研究。

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