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Problem Formulation and Solution Methodology for Energy Consumption Optimization in Bernoulli Serial Lines

机译:伯努利串行线路能耗优化的问题制定与解决方法

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As the main force of energy consumption, machines consume a huge amount of energy in some production systems. To operate the systems in an energy-efficient way, the efficiencies of the machines should be elaborately optimized so that the total energy consumption in the production lines is minimized while maintaining the required production rate. For this purpose, this article investigates the energy consumption optimization problem in Bernoulli serial lines having more than two machines. Specifically, this problem is first formulated as a nonlinear programming with a production rate constraint; due to difficulties in solving this constrained nonlinear programming, structural characteristics of the problem and properties of the objective function, which are inspired by the results and insights obtained in two-machine lines, are analyzed. Finally, based on the structural characteristics and properties explored, a solution methodology is developed to recursively solve the unique optimal solution of the energy consumption optimization problem. Extensive numerical experiments show that the solution provided by this method, which has the reversibility property and is better than the one provided by an existing method in the literature, is numerically optimal (note that the theoretically optimal solution is extremely hard to obtain if not totally impossible). Note to Practitioners-Machines consume a huge amount of energy in energy-intensive (i.e., high energy-consuming) production systems in, e.g., automobile, semiconductor, and steel companies. Due to economic, social, and environmental concerns, it is a high priority to consider ways to reduce the energy consumption in these production systems. In this article, the problem of minimizing the total energy consumption in Bernoulli serial lines while maintaining the required production rate is investigated. Based on the aggregation method developed for performance analysis of long lines and the optimization results obtained for two-machine lines, the energy consumption optimization problem for long Bernoulli serial lines is elaborately analyzed and a method is proposed to recursively solve its unique optimal solution (i.e., the optimal machine efficiencies). From the point of view of system operation, this research, which makes the system operate in the most energy-efficient manner, offers a new managerial paradigm for the production systems.
机译:作为能量消耗的主要力量,机器在一些生产系统中消耗大量的能量。为了以节能的方式操作系统,应精确地优化机器的效率,使得生产线中的总能耗在保持所需的生产率的同时最小化。为此目的,本文调查了拥有多种机器的伯努利串行线路的能耗优化问题。具体地,首先将该问题配制为具有生产率约束的非线性编程;由于解决了这种受约束的非线性规划的困难,分析了由两种机线中获得的结果和见解的目标功能的问题和性质的结构特征和性质。最后,基于探索的结构特征和性质,开发了一种解决方案方法来递归地解决能量消耗优化问题的独特最佳解决方案。广泛的数值实验表明,该方法提供的解决方案具有可逆性性能并且优于文献中现有方法提供的方法,在数字上是最佳的(注意,理论上最佳的解决方案非常难以获得,如果不是完全的话不可能的)。医疗器 - 机器的注意事项消耗了大量的能量(即,高能耗)生产系统中的能量,例如,汽车,半导体和钢铁公司。由于经济,社会和环境和环境问题,考虑降低这些生产系统中的能耗的方法是一个很高的优先事项。在本文中,研究了在保持所需生产率的同时最小化伯努利串行线路总能耗的问题。基于为长线的性能分析开发的聚集方法和双机线获得的优化结果,精心分析了长伯努利串行线路的能量消耗优化问题,并提出了一种方法来递归解决其独特的最佳解决方案(即,最佳机器效率)。从系统操作的角度来看,这项研究使系统以最节能的方式运行,为生产系统提供了新的管理范式。

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