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Formulation and analysis of dynamic supply chain of backfill in construction waste management using agent-based modeling

机译:基于主体模型的建筑垃圾管理中回填动态供应链的建立与分析

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Backfill is the excavated material from earthworks, which constitutes over 50% of the construction wastes in Hong Kong. This paper considers a supply chain that consists of construction sites, landfills and commercial sources in which operators seek cooperation to maximize backfill reuse and improve waste recovery efficiency. Unlike the ordinary material supply chain in manufacturing industries, the supply chain for backfill involves many dynamic processes, which increases the complexity of analyzing and solving the logistic issue. Therefore, this study attempts to identify an appropriate methodology to analyze the dynamic supply chain, for facilitating the backfill reuse. A centralized optimization model and a distributed agent-based model are proposed and implemented in comparing their performances. The centralized optimization model can obtain a global optimum but requires sharing of complete information from all supply chain entities, resulting in barriers for implementation. In addition, whenever the backfill supply chain changes, the centralized optimization model needs to reconfigure the network structure and recompute the optimum. The distributed agent-based model focuses on task distribution and cooperation between business entities in the backfill supply chain. In the agent-based model, decision making and communication between construction sites, landfills, and commercial sources are emulated by a number of autonomous agents. They perform together through a negotiation algorithm for optimizing the supply chain configuration that reduces the backfill shipment cost. A comparative study indicates that the agent-based model is more capable of studying the dynamic backfill supply chain due to its decentralization of optimization and fast reaction to unexpected disturbances.
机译:回填是从土方工程中挖掘出来的材料,占香港建筑废料的50%以上。本文考虑了由建筑工地,垃圾填埋场和商业资源组成的供应链,运营商在其中寻求合作以最大程度地提高回填物的再利用和提高废物回收效率。与制造业中普通的材料供应链不同,回填的供应链涉及许多动态过程,这增加了分析和解决物流问题的复杂性。因此,本研究试图找到一种适当的方法来分析动态供应链,以促进回填的再利用。在比较它们的性能时,提出并实现了集中式优化模型和基于分布式代理的模型。集中式优化模型可以获取全局最优值,但需要共享所有供应链实体的完整信息,从而导致实施障碍。此外,只要回填供应链发生变化,集中式优化模型就需要重新配置网络结构并重新计算最优值。基于分布式代理的模型专注于回填供应链中业务实体之间的任务分配和合作。在基于代理的模型中,建筑工地,垃圾填埋场和商业资源之间的决策和沟通是由许多自治代理模拟的。他们通过协商算法共同执行,以优化供应链配置,从而减少回填运输成本。一项比较研究表明,基于代理的模型由于其优化的分散性和对意外干扰的快速反应,因此能够研究动态回填供应链。

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