《山东大学学报(理学版)》 ›› 2020, Vol. 55 ›› Issue (7): 88-102, 110.doi: 10.6040/j.issn.1671-9352.0.2019.290
Dan-dan SUN(),Ke LI*(),Li-bin XIE,Zong-yu MU
摘要:
针对突发事件干扰需求和成本扰动的情况,构建了零售商回收、制造商回收和第三方回收等类别闭环供应链的应急决策模型。研究表明:在3类回收系统和集中式决策系统中,相比较正常运营环境下的均衡决策,当需求和成本的综合扰动程度不大时,产品销售量和废旧品回收率等均具鲁棒性,但应随市场需求扰动方向调整产品的批发价和销售价;当需求和成本的综合扰动程度较大时,应随市场需求扰动方向同时调整产品的批发价、销售价、销售量和废旧品的回收率;当需求减少和成本增加的综合扰动程度很大时, 3类回收系统和集中式决策系统会被破坏;在需求和成本扰动的各类情况下,制造商选择MRCRM系统运营可获得较大利润;当需求减少和成本增加的综合扰动程度超过一定阈值时,因集中式决策系统会承担较多的额外处理成本,使得利润减少较多,故其利润会小于MRCRM系统的总利润,在其他扰动情况下,可通过应急收益费用共享契约协调解决MRCRM系统中存在的“双重边际效应”问题,提高系统的运营效率,并使各成员均获得帕累托改进的利润。
中图分类号:
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