Supply chain management has been concentrated on productive ways to manage flows through a sophisticated vendor, manufacturer, and consumer networks for decades. Recently, energy and material rates have been greatly consumed to improve the sector, making sustainable development the core problem for advanced and developing countries. A new approach of supply chain management is proposed to maintain the economy along with the environment issue for the design of supply chain as well as the highest reliability in the planning horizon to fulfill customers demand as much as possible. This paper aims to optimize a new sustainable closed-loop supply chain network to maintain the financial along with the environmental factor to minimize the negative effect on the environment and maximize the average total number of products dispatched to customers to enhance reliability. The situation has been considered under demand uncertainty with warehouse reliability. This approach has been suggested the multi-objective mathematical model minimizing the total costs and total CO2 emissions and maximize the reliability in handling for establishing the closed-loop supply chain. Two optimization methods are used namely Multi-Objective Genetic Algorithm Optimization Method and Weighted Sum Method. Two results have shown the optimality of this approach. This paper also showed the optimal point using Pareto front for clear identification of optima. The results are approved to verify the efficiency of the model and the methods to maintain the financial, environmental, and reliability issues.
翻译:过去十年来,供应链管理一直集中在通过复杂的销售商、制造商和消费者网络管理资金流动的生产方式上;最近,能源和材料价格被大量消耗,以改善该部门,使可持续发展成为发达国家和发展中国家的核心问题;提出了供应链管理的新办法,以维持经济,同时解决供应链设计方面的环境问题,以及尽可能在规划领域尽可能可靠地满足客户需求;本文件旨在优化新的可持续封闭式供应链网络,以保持金融与环境因素相结合,最大限度地减少对环境的不利影响,并最大限度地增加向客户发送的提高可靠性的产品的平均总数;在需求不确定的情况下,以仓库可靠性的方式审议了这种情况;建议采用多目标的数学模型,尽量降低总成本和二氧化碳排放总量,并最大限度地提高处理建立封闭式供应链的可靠性;采用了两种优化方法,即多子蛋遗传性高压优化法和Weight-Sum方法;两个结果显示了这一方法的最佳性;该文件还展示了利用Pareto软件前端的可靠度优化点,以核实环境效率。