具有多材料、质量退化和概率需求的可持续生产库存模型:从文献计量分析到稳健模型

Q1 Earth and Planetary Sciences Indonesian Journal of Science and Technology Pub Date : 2022-12-28 DOI:10.17509/ijost.v8i2.54056
D. M. Utama, I. Santoso, Y. Hendrawan, W. A. P. Dania
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引用次数: 2

摘要

一个适当的可持续生产库存模型有望代表复杂的现实情况,包括燃料、排放和电力成本,以及多种材料、质量退化和概率需求。因此,本研究开发这类模型,以确定原材料出货量(),生产周期时间(),产成品交付数量(n),以最大化预期总利润(ETP)。所提出的模型是基于对可持续生产库存问题的文献计量学分析,并使用VOSviewer进行可视化。此外,针对可持续生产库存模型优化中存在的问题,提出了一种复杂的Harris-Hawks优化算法。同样重要的是要注意,提供了三个数值案例来评估算法的性能。结果表明,该方法在最大ETP方面优于遗传算法(GA)和粒子群算法(PSO),更适合ETP优化。从敏感性分析中还发现,质量降解率(k)的增加导致ETP和T的降低。
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Sustainable Production-Inventory Model with Multi-Material, Quality Degradation, and Probabilistic Demand: From Bibliometric Analysis to A Robust Model
An adequate sustainable production inventory model is expected to represent complex real-life cases involving fuel, emissions, and electricity costs as well as multi-materials, quality degradation, and probabilistic demand. Therefore, this study was conducted to develop this kind of model to determine the number of raw material shipments (), production cycle time (), and the number of finished goods delivered (n) to maximize the Expected Total Profit (ETP). The proposed model is based on a bibliometric literature analysis of the sustainable production-inventory problem which is visualized using the VOSviewer. Moreover, a sophisticated Harris-Hawks Optimization (HHO) algorithm was proposed to solve the problems identified in the sustainable production inventory model optimization. It is also important to note that three numerical cases were provided to evaluate the performance of the algorithm. The findings showed that the suggested HHO method outperforms the Genetic Algorithm (GA) and Particle Swarm Optimization (PSO) in maximizing ETP and this means it is better for ETP optimization. It was also discovered from the sensitivity analysis that an increase in the rate of quality degradation (k) led to a reduction in both the ETP and T.
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来源期刊
Indonesian Journal of Science and Technology
Indonesian Journal of Science and Technology Engineering-Engineering (all)
CiteScore
11.20
自引率
0.00%
发文量
10
审稿时长
16 weeks
期刊最新文献
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