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A Diagnostic Framework for Demand Amplification Problems in Supply Chains

机译:供应链中需求放大问题的诊断框架

摘要

This dissertation delivers a framework to diagnose the Bull-Whip Effect (BWE) in supply chains and then identify methods to minimize it. Such a framework is needed because in spite of the significant amount of literature discussing the bull-whip effect, many companies continue to experience the wide variations in demand that are indicative of the bull-whip effect. While the theory and knowledge of the bull-whip effect is well established, there still is the lack of an engineering framework and method to systematically identify the problem, diagnose its causes, and identify remedies.The present work seeks to fill this gap by providing a holistic, systems perspective to bull-whip identification and diagnosis. The framework employs the SCOR reference model to examine the supply chain processes with a baseline measure of demand amplification. Then, research of the supply chain structural and behavioral features is conducted by means of the system dynamics modeling method.The contribution of the diagnostic framework, is called Demand Amplification Protocol (DAMP), relies not only on the improvement of existent methods but also contributes with original developments introduced to accomplish successful diagnosis. DAMP contributes a comprehensive methodology that captures the dynamic complexities of supply chain processes. The method also contributes a BWE measurement method that is suitable for actual supply chains because of its low data requirements, and introduces a BWE scorecard for relating established causes to a central BWE metric. In addition, the dissertation makes a methodological contribution to the analysis of system dynamic models with a technique for statistical screening called SS-Opt, which determines the inputs with the greatest impact on the bull-whip effect by means of perturbation analysis and subsequent multivariate optimization. The dissertation describes the implementation of the DAMP framework in an actual case study that exposes the approach, analysis, results and conclusions. The case study suggests a balanced solution between costs and demand amplification can better serve both firms and supply chain interests. Insights pinpoint to supplier network redesign, postponement in manufacturing operations and collaborative forecasting agreements with main distributors.
机译:本文为诊断供应链中的牛鞭效应(BWE),然后确定将其最小化的方法提供了一个框架。之所以需要这样一个框架,是因为尽管有大量文献讨论了牛鞭效应,但许多公司仍继续经历需求的广泛变化,这些变化表明牛鞭效应。尽管关于牛鞭效应的理论和知识已广为人知,但仍缺乏工程系统框架和方法来系统地识别问题,诊断其原因并确定补救措施。全面的系统视角来识别和诊断牛鞭。该框架采用SCOR参考模型来检查供应链流程,并以需求放大的基准量度。然后,通过系统动力学建模方法对供应链的结构和行为特征进行研究。诊断框架的贡献被称为需求放大协议(DAMP),它不仅依赖于现有方法的改进,而且引入了可以成功完成诊断的原始开发成果。 DAMP提供了一种全面的方法,可以捕获供应链流程的动态复杂性。该方法还提供了一种BWE测量方法,该方法由于其对数据的要求较低而适合于实际的供应链,并引入了BWE记分卡,用于将已确定的原因与中央BWE指标相关联。此外,本文通过一种称为SS-Opt的统计筛选技术为系统动力学模型的分析提供了方法学上的贡献,该技术通过扰动分析和随后的多元优化来确定对牛鞭效应影响最大的输入。本文在一个实际案例研究中描述了DAMP框架的实现,该案例揭示了方法,分析,结果和结论。案例研究表明,在成本和需求扩大之间找到平衡的解决方案可以更好地为公司和供应链利益服务。洞察力明确了供应商网络的重新设计,制造业务的推迟以及与主要分销商的协作预测协议。

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  • 作者

    Amaya Rene A.;

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  • 年度 2011
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