Exploring a circular economy solution space A comparative study to develop automated optimisation workflows supported by machine learning for circular design problems

F. P. Ortner, J. Tay
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引用次数: 0

Abstract

Embedding circular economy (CE) principles in early design requires iterative evaluation across multiple lifecycle phases, with trade-offs between objectives complicating the identification of best solutions. This paper puts forward methods to automatically discover diverse, yet well-performing solution types within complex multi-objective CE design optimisation models. Working with a parametric model derived from a furniture design for CE case study, a comparison is made between weighted-sum single objective optimisation and multi-objective optimisation augmented with clustered solution types targeted by the reference point-based NSGA-II optimisation algorithm. Efficiency of optimisation, quality of results and distinctiveness of solution types presented by each method is compared in an effort to understand which will best assist designers to manage complexity in CE design. The generalisability of the presented methods to larger scale CE design problems is discussed and future areas of work on computational design for CE are extrapolated from the presented results.
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探索循环经济解决方案空间开发由机器学习支持的循环设计问题自动化优化工作流程的比较研究
在早期设计中嵌入循环经济(CE)原则需要跨多个生命周期阶段的迭代评估,目标之间的权衡使最佳解决方案的确定复杂化。本文提出了在复杂的多目标CE设计优化模型中自动发现多种且性能良好的解决方案类型的方法。通过一个家具设计的参数化模型,对基于参考点的NSGA-II优化算法的加权和单目标优化和多目标优化进行了比较。通过比较每种方法所呈现的优化效率、结果质量和解决方案类型的独特性,以了解哪种方法最有助于设计师管理CE设计中的复杂性。讨论了所提出的方法对更大规模CE设计问题的通用性,并从所提出的结果中推断出CE计算设计的未来工作领域。
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CiteScore
3.20
自引率
17.60%
发文量
44
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