A Dynamic Pricing Model for Postponement Supply Chain: The Bi-level Programming Approach

Shou-Ping Gui, Niu Baozhuang
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引用次数: 2

Abstract

The paper proposes a dynamic pricing model based on bi-level programming approach: firstly, we establish a two-stage distributed control model for postponement supply chain, which is the basis of the pricing model. Then, according to the pricing mechanism, we find that there is Stackelberg game feature in the process. Aimed at the feature, we propose a dynamic bi-level programming model, taking the centered warehousing & manufacturing point (CWMP) as the leader, and hence, the model is calculated and verified using the investigation data. We take chaos coverage hunting algorithm to solve the model, based on its features. Research shows: the dynamic pricing model is helpful to obtain the maximum profit of the whole supply chain, which is under the assumption of a two-stage distributed control system; we obtain steady equilibrium prices (EP), which verify the efficiency of the decision-making model. The pricing model is proved to be useful to give reasonable prices of goods traded on postponement supply chain, and it is also an effective decision-making tool of supply chain coordination.
延期供应链的动态定价模型:双层规划方法
本文提出了一种基于双层规划方法的动态定价模型:首先,建立了延迟供应链的两阶段分布式控制模型,这是定价模型的基础;然后,根据定价机制,我们发现这一过程中存在Stackelberg博弈特征。针对这一特点,提出了以中心仓储制造点(CWMP)为先导的动态双层规划模型,并利用调查数据对模型进行了计算和验证。根据混沌覆盖的特点,采用混沌覆盖搜索算法对模型进行求解。研究表明:在两阶段分布式控制系统的假设下,动态定价模型有助于实现整个供应链的利润最大化;得到了稳定均衡价格(EP),验证了决策模型的有效性。实践证明,该定价模型能够有效地给出延期供应链上交易商品的合理价格,是供应链协调的有效决策工具。
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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