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Diagnosis on Energy and Sustainability of Reconfigurable Manufacturing System (RMS) Design: A Bi-level Decomposition Approach

机译:可重新配置制造系统(RMS)设计能源和可持续性的诊断:双级分解方法

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Sustainability and energy consumption awareness led industrial sector to reduce energy consumption. This reduction is regarded as a solution to reduce greenhouse gas emissions. Moreover, international regulations about maintenance activities involve hazardous energy-any electrical, mechanical, nuclear or other energies that can harm personnel- as a rising threat. Thus, energy audits and diagnosis of existing manufacturing systems are crucial to achieve energy efficiency. Future manufacturing paradigms as reconfigurable manufacturing system (RMS) have shown high responsiveness to cope with new challenges such as sustainability. This paper proposes a sustainable RMS design through process plan generation. The approach is developed to generate a process plan while diagnosing energy flow and assigning preventive maintenance activities related to reliability reduction in system components. More specifically, a mixed-integer non-linear program is proposed, then solved using a bi-level decomposition approach. The lower-level considers process plan generation following parts requirements and guided by energy loss as an objective. Afterwards, the upper-level diagnoses the reliability of the lower-level selected machines and tools. Moreover, it checks if preventive maintenance is required due to the level of hazardous energy and maintenance plan. The approach applicability is validated through an illustrative example.
机译:可持续性和能源消耗意识LED工业部门降低能耗。这种减少被认为是减少温室气体排放的解决方案。此外,关于维护活动的国际法规涉及危险能源 - 任何可能危害人员的电气,机械,核或其他能量 - 作为上升威胁。因此,对现有制造系统的能量审计和诊断至关重要,以实现能效。作为可重构制造系统(RMS)的未来制造范式已表现出高响应性,以应对可持续性等新挑战。本文通过流程计划生成提出可持续的RMS设计。该方法是开发的,以在诊断能量流程和分配与系统组件的可靠性减少相关的预防性维护活动的同时生成过程计划。更具体地,提出了一种混合整数非线性程序,然后使用双级分解方法解决。较低级别的考虑过程计划在零件要求之后生成,并以能量损失为目标。之后,上层诊断了较低级别的机器和工具的可靠性。此外,它检查是否需要预防性维护,因为危险能量和维护计划的水平。通过说明性示例验证了这种方法。

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