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An Integrated Solution to Minimize the Energy Consumption of a Resource-Constrained Machining System

机译:一种集成解决方案,以最大限度地减少资源受限加工系统的能耗

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Going "energy efficient" has been one of the missions for manufacturers to stay globally competitive. Considering machining as a major manufacturing activity, how to effectively model and control its energy consumption becomes critical. Although researchers have analyzed the energy consumption of machining from the machine, process planning, or shop-floor perspective individually, very litter work has comprehensively studied the concurrent interactions among energy-aware decisions for machine parameter settings, process planning, and shop-floor control. Hence, the work presented in this article undertakes this challenge in the context of a resource-constrained machining system. In particular, the energy characteristics of machining are first analyzed with the consideration of various machine tools, cutting tools, cutting parameters, operation sequences, as well as machine availability. A multiobjective optimization model is then developed to minimize both energy consumption and makespan. The solution is provided through honey bee mating optimization algorithm (HBMOA) combined with shop-floor simulation. In addition, the significance of the proposed approach is exemplified and elucidated by a case study. Note to Practitioners-A well-informed decision made in cutting parameter optimization or process planning relies heavily on the accurate data delivered from the shop floor. In other words, the decision made without the consideration of the shop-floor situation might not achieve the original goal or even fail to materialize. As these factors exist in a real manufacturing cycle, how to integrate shop-floor scheduling with process planning and machining parameter optimization becomes essential for energy-efficient manufacturing. This article undertakes this challenge and develops a multiobjective optimization model, where energy consumption of machining, for the first time to the best of our knowledge, is comprehensively analyzed at both the machine level and shop-floor level. Such broader integration makes this approach more practical and applicable to real industry settings, particularly when the shop-floor resource is limited.
机译:走向“节能”一直是制造商保持全球竞争的特派团之一。考虑加工作为主要的制造活动,如何有效地模拟和控制其能量消耗变得至关重要。尽管研究人员已经分析了机器的加工能耗,过程规划或商店地板的观点,但是全面地研究了机器参数设置,过程规划和车间控制的能量感知决策之间的并行交互。 。因此,本文所呈现的工作在资源受限的加工系统的背景下进行这一挑战。特别地,首先考虑各种机床,切割工具,切割参数,操作序列以及机器可用性首先分析加工的能量特性。然后开发了一种多目标优化模型以最大限度地减少能量消耗和MakEspan。通过蜂蜜蜂交配优化算法(HBMOA)提供解决方案,结合车间模拟。此外,案例研究表明并阐明了所提出的方法的重要性。请注意,从业者 - 在切割参数优化或流程规划方面做出的知情决策严重依赖于商店地板提供的准确数据。换句话说,在不考虑商店地板情况的情况下制定的决定可能无法实现原始目标,甚至无法实现。由于这些因素存在于实际制造周期中,如何将商店地板调度与过程规划和加工参数优化集成,对节能制造成为必不可少的。本文承担了这一挑战,并开发了一种多目标优化模型,其中,在机器水平和商店地板层面,全面分析了加工的能量消耗。这种更广泛的整合使得这种方法更加实用和适用于真实的行业环境,特别是当商店地板资源有限时。

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