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A sustainable manufacturing system design: A fuzzy multi-objective optimization model

机译:可持续制造系统设计:模糊多目标优化模型

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摘要

In the past decade, there has been a growing concern about the environmental protection in public society as governments almost all over the world have initiated certain rules and regulations to promote energy saving and minimize the production of carbon dioxide (CO2) emissions in many manufacturing industries. The development of sustainable manufacturing systems is considered as one of the effective solutions to minimize the environmental impact. Lean approach is also considered as a proper method for achieving sustainability as it can reduce manufacturing wastes and increase the system efficiency and productivity. However, the lean approach does not include environmental waste of such as energy consumption and CO2 emissions when designing a lean manufacturing system. This paper addresses these issues by evaluating a sustainable manufacturing system design considering a measurement of energy consumption and CO2 emissions using different sources of energy (oil as direct energy source to generate thermal energy and oil or solar as indirect energy source to generate electricity). To this aim, a multi-objective mathematical model is developed incorporating the economic and ecological constraints aimed for minimization of the total cost, energy consumption, and CO2 emissions for a manufacturing system design. For the real world scenario, the uncertainty in a number of input parameters was handled through the development of a fuzzy multi-objective model. The study also addresses decision-making in the number of machines, the number of air-conditioning units, and the number of bulbs involved in each process of a manufacturing system in conjunction with a quantity of material flow for processed products. A real case study was used for examining the validation and applicability of the developed sustainable manufacturing system model using the fuzzy multi-objective approach.
机译:在过去的十年中,公共社会环境保护令人担忧,因为各国政府几乎全世界都启动了一定的规则和规定,以促进节能,并尽量减少许多制造业中的二氧化碳(二氧化碳)排放的生产。可持续制造系统的发展被认为是最大限度地减少环境影响的有效解决方案之一。精益的方法也被认为是实现可持续性的适当方法,因为它可以减少制造废物并提高系统效率和生产率。然而,在设计精益制造系统时,精益方法不包括如能耗和二氧化碳排放的环境浪费。本文通过评估可持续的制造系统设计来解决这些问题,考虑使用不同的能量来源(油作为直接能量源,以产生热能和油或太阳作为间接能源以产生电力)的能耗和二氧化碳排放的测量。为此目的,开发了一种多目标数学模型,包括最小化制造系统设计的总成本,能源消耗和二氧化碳排放的经济和生态制约。对于真实世界的情景,通过开发模糊多目标模型来处理许多输入参数的不确定性。该研究还解决了机器数量的决策,空调单元的数量和制造系统的每个过程中涉及的灯泡数量结合加工产品的数量。实际案例研究用于检查开发的可持续制造系统模型的验证和适用性,使用模糊多目标方法。

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