A Discrete-Event Simulation Study of Multi-Objective Sales and Operation Planning Under Demand Uncertainty: A Case of the Ethiopian Automotive Industry

IF 0.9 Q4 AUTOMATION & CONTROL SYSTEMS
Yigedeb Abay, T. Kaihara, D. Kokuryo
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引用次数: 0

Abstract

Sales and operation planning is one of the major categories of supply chain planning that enables the balancing of demand with supply through the integration of internal functions as well as external supply chain members. The major issues are its large scale, dynamic, multi-objective nature and presence of uncertain parameters. Handling uncertainty, extending the level of integration, enhancing collaboration, and contextualization of the models already developed in different industrial situations are the gaps identified in the literature. This research aims to develop a discrete-event simulation model from the literature in the context of the Ethiopian automotive industry and extend the level of collaboration to suppliers and customers. The industry’s sales and operation planning process is surveyed to develop the model as a decision support system that can be utilized for understanding the system behavior, evaluation of manufacturing flexibility, and inventory control policies. The research findings demonstrate that the customer service level and total profit can be significantly improved through the proposed joint primary and negotiated backup supply policy with price revision. Managerial implications that are expected to improve the technical capability of Ethiopian automotive industries are also highlighted.
需求不确定情况下多目标销售和运营规划的离散事件模拟研究:埃塞俄比亚汽车行业案例
销售和运营计划是供应链计划的主要类别之一,通过整合内部职能部门和外部供应链成员,实现供需平衡。主要问题在于其大规模、动态、多目标的性质以及不确定参数的存在。处理不确定性、扩展集成水平、加强协作以及将已开发的模型与不同工业环境相结合,是文献中发现的不足之处。本研究旨在根据埃塞俄比亚汽车行业的背景,从文献中开发离散事件仿真模型,并将协作水平扩展到供应商和客户。通过对该行业的销售和运营计划流程进行调查,将该模型开发成一个决策支持系统,可用于了解系统行为、评估生产灵活性和库存控制政策。研究结果表明,通过建议的联合主要供应和协商后备供应政策以及价格调整,可以显著提高客户服务水平和总利润。研究还强调了有望提高埃塞俄比亚汽车行业技术能力的管理意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
International Journal of Automation Technology
International Journal of Automation Technology AUTOMATION & CONTROL SYSTEMS-
CiteScore
2.10
自引率
36.40%
发文量
96
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