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Impacts of carbon emission reduction mechanisms on uncertain make-to-order manufacturing

机译:碳减排机制对不确定的按订单生产的影响

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摘要

Lot sizing in queuing networks is pivotal to batch manufacturing, especially in stochastic environments. Despite development in lot sizing optimisation, the results are often rendered unrealistic because few studies have considered the impacts of relevant environmental regulation policies on production planning. This paper incorporates stochastic lot sizing optimisation with two dominant carbon emission reduction mechanisms - the carbon emission constraint and the cap-and-trade system - to examine their operational and environmental impacts on make-to-order manufacturing. It also compares these two mechanisms in environmental conservation. Numerical experiments validate the importance of considering the carbon emission regulations to traditional production planning problems. The results highlight that the market-based characteristics of the cap-and-trade mechanism motivate firms with economic benefits to adopt low-carbon technologies and environmental-friendly facilities to curb greenhouse gases emission. In contrast, the carbon emission constraint mechanism is like administrative orders to force out outmoded industries and outdated technologies.
机译:排队网络中的批量确定对于批生产至关重要,尤其是在随机环境中。尽管在批量优化方面有所发展,但由于很少有研究考虑了相关环境法规政策对生产计划的影响,因此结果常常不切实际。本文将随机批次大小优化与两种主要的碳减排机制(碳排放约束和总量控制与交易系统)结合在一起,以研究其对按订单生产的操作和环境影响。它还比较了环境保护中的这两种机制。数值实验证实了考虑碳排放法规对传统生产计划问题的重要性。结果表明,总量管制和交易机制的市场特征促使具有经济利益的公司采用低碳技术和环保设施来抑制温室气体排放。相反,碳排放限制机制就像行政命令一样,将过时的行业和过时的技术赶出去。

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