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The Complexity Analysis and Control of Time-Delay OEM Supply Chain considering RD Efforts and Marketing Level

机译:考虑研发工作和营销水平的时滞OEM供应链复杂性分析与控制

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摘要

In this paper, we investigate a supply chain consisting of an OEM (i.e., original equipment manufacturer) and a CM (contract manufacturer), in which the OEM decides design effort level and marketing level, and the CM makes decision on product manufacturing effort level. We establish a three-dimensional discrete dynamic model with time delay. Firstly, the sufficient conditions for Neimark-Sacker bifurcation are obtained by using different combinations of decision delay periods as bifurcation parameters, and the effect of the adjustment speeds of decision variables on the system stability and impact of time delay on the system stability are discussed, respectively. Secondly, we perform numerical simulation of this model from the perspective of entropy theory. Finally, we propose two methods to control chaos. Results show that when the time delay or the adjustment speed of decision variable exceed a certain threshold, the system will be led into a chaotic state and the entropy of the system will increase. For alleviating the negative effects of chaotic systems, we introduce control parameters to make efficient control on the chaos. At the critical point, the critical value of the adjustment speed of design effort level (or marketing level) of OEM increases as the adjustment speed of the manufacturing effort level of CM decreases, and vice versa.
机译:在本文中,我们研究了由OEM(即原始设备制造商)和CM(合同制造商)组成的供应链,其中OEM决定设计工作量水平和营销水平,CM决定产品制造工作量水平。建立了具有时滞的三维离散动力学模型。首先,以不同的决策延迟周期组合作为分岔参数,得到了Neimark-Sacker分岔的充分条件,并分别讨论了决策变量的调整速度对系统稳定性的影响和时间延迟对系统稳定性的影响;其次,从熵理论的角度对该模型进行数值模拟;最后,我们提出了两种控制混沌的方法。结果表明:当决策变量的时间延迟或调整速度超过一定阈值时,系统将进入混沌状态,系统熵增大;为了减轻混沌系统的负面影响,我们引入了控制参数,对混沌系统进行了有效控制。在临界点,OEM设计努力水平(或营销水平)调整速度的临界值随着CM制造努力水平调整速度的降低而增加,反之亦然。

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