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Analysis of the Complexity Entropy and Chaos Control of the Bullwhip Effect Considering Price of Evolutionary Game between Two Retailers

机译:考虑两个零售商之间演化博弈价格的牛鞭效应的复杂熵和混沌控制

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In this research, a model is established to represent a supply chain, which consists of one manufacturer and two retailers. The price-sensitive demand model is considered and the price game system is built according to the rule of bounded rationality as well as the entropy theory. With the increase of the price adjustment speed, the game system may go into chaos from the stable and periodic state. The bullwhip effect and inventory variance ratio of different stages that the system falls in are compared in real time. We also employ the delayed feedback control method to control the system and succeed in mitigating the bullwhip effect of the system. On the whole, the bullwhip effect and inventory variance ratio in the stable state are smaller than those in period-doubling and chaos. In the stable state, there is an optimal price adjustment speed to obtain both the lowest bullwhip effect and inventory variance ratio.
机译:在这项研究中,建立了一个代表供应链的模型,该模型由一个制造商和两个零售商组成。考虑价格敏感的需求模型,根据有限理性规则和熵理论建立价格博弈系统。随着价格调整速度的增加,游戏系统可能会从稳定和周期性的状态陷入混乱。实时比较系统所处不同阶段的牛鞭效应和库存差异率。我们还采用了延迟反馈控制方法来控制系统,并成功减轻了系统的牛鞭效应。总体而言,稳定状态下的牛鞭效应和库存差异率小于周期倍增和混乱状态下的牛鞭效应和库存差异率。在稳定状态下,有一个最佳的价格调整速度来获得最低的牛鞭效应和库存差异率。

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