...
首页> 外文期刊>Procedia CIRP >Energy- and Labor-aware Production Scheduling for Sustainable Manufacturing: A Case Study on Plastic Bottle Manufacturing
【24h】

Energy- and Labor-aware Production Scheduling for Sustainable Manufacturing: A Case Study on Plastic Bottle Manufacturing

机译:可持续制造中的能源和劳动意识生产计划:以塑料瓶制造为例

获取原文

摘要

Among the potential roadmaps towards sustainable production, the emerging energy-cost-aware production scheduling philosophy is considered as one promising direction. Therein, sustainability objectives, e.g., minimization of energy consumption/cost of production processes and stabilization of the electricity grid, can be achieved by manufacturing enterprises in a low-cost manner. However, these sustainability goals should be integrated with conventional production constraints besides the due date, e.g., reasonable labor cost based on work shifts, no production at weekends, and changeovers for different product types. This paper formulates a mixed-integer linear programming model for energy- and labor-cost-aware production scheduling at the unit process level, considering all the aforementioned constraints. A state-based energy model is used to reveal the energy consumption behavior of a process over time. It thus enables fine-grained energy-aware production scheduling. A case study is conducted for a blow molding process in a Belgian plastic bottle manufacturer. The measured power data enables to build an empirical energy model. The production scheduling is performed under real-time electricity pricing data. As a result, production loads are automatically shifted to the optimal periods. The optimal idle mode is automatically selected between production loads (powering off, idle, etc.). A schedule of joint energy cost and labor cost minimization is demonstrated to reduce 12% and 5% of total cost, compared to schedules that minimize energy and labor cost, respectively. In conclusion, although the labor wage is usually higher during periods with lower electricity price, energy and labor costs can be jointly optimized as a single objective to help factories minimize the production expenditure.
机译:在实现可持续生产的潜在路线图中,新兴的意识到能源成本的生产计划哲学被认为是一个有希望的方向。其中,制造企业可以以低成本的方式实现可持续性目标,例如最小化能耗/生产过程的成本和电网的稳定。但是,这些可持续性目标除了到期日外,还应与常规生产限制相结合,例如,根据工作班次的合理人工成本,周末不生产以及针对不同产品类型的转换。考虑到所有上述约束,本文为单位工艺级别的能源和人工成本意识的生产计划制定了混合整数线性规划模型。基于状态的能源模型用于揭示过程随时间的能源消耗行为。因此,它可以实现细粒度的能源感知生产计划。在一家比利时塑料瓶制造商的吹塑过程中进行了案例研究。测得的功率数据能够建立经验能量模型。生产计划是在实时电价数据下执行的。结果,生产负荷自动转移到最佳时期。在生产负载之间自动选择最佳的空闲模式(关机,空闲等)。与分别将能源和人工成本最小化的计划相比,联合能源成本和人工成本最小化的计划被证明减少了总成本的12%和5%。总之,尽管在电价较低的时期劳动工资通常较高,但可以将能源和劳动力成本共同优化为一个目标,以帮助工厂减少生产支出。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号