Bi-objective Optimization for Rebar Cutting Plan Using Symbiotic Organisms Search

Aucky Sugianto, Yang I Tung
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Abstract

The construction industry is one of the biggest industries in the world. One of the most important materials in this industry is the reinforced steel bar. In construction site usually fabricated the reinforced steel bars into the form of one-dimensional stocks and designed according to the structural specification and installed in various structural components such as columns, beam, slab, and foundation. The purpose of cutting stock problems for reinforced steel bars (rebar cutting plan, RCP) is to satisfy the project requirements and also to minimize the cutting losses, which is the major contributor to the construction waste As there are two objective functions, we call the problem bi-objective rebar cutting plan (B-RCP). In the previous research, efforts developed the metaheuristics method to minimize the cutting losses in preliminary engineering designs but it few to consider about simplicity in order to achieve efficient work. Thus, this research applies the bi-optimization with epsilon constraint in order to find the trade-off solution between the material waste and number of cutting pattern for decision making. This study proposed the metaheuristic method Symbiotic Organisms Search (SOS) to solve B-RCP in one framework, to find the feasible cutting patterns along with the minimum total waste of the reinforced steel bar. To test the performance of the proposed SOS framework, the previous study case is set to be a benchmark, and then create a comparison with PSO. For real project instances of RCP are used to evaluate and validate the performance of SOS. The validation results from both cases of RCP show that SOS has better performance than PSO in both minimize the material waste along reducing the number of cutting patterns. Thus, it is validated that SOS is a competitive algorithm for solving the RCP.
基于共生生物搜索的钢筋切割方案双目标优化
建筑业是世界上最大的行业之一。在这个行业中最重要的材料之一是钢筋。在施工现场,通常将钢筋制作成一维坯料的形式,按照结构规范进行设计,安装在柱、梁、板、基础等各种结构构件中。钢筋切割库存问题(钢筋切割计划,RCP)的目的是为了满足工程要求,并尽量减少切割损失,这是建筑垃圾的主要来源。由于有两个目标函数,我们称之为双目标钢筋切割计划(B-RCP)。在以往的研究中,人们开发了元启发式方法,以最大限度地减少初步工程设计中的切割损失,但很少考虑简单性,以实现高效的工作。因此,本研究采用带有epsilon约束的双优化方法,寻找材料浪费与切割图案数量之间的权衡解,以供决策。本文提出了一种基于共生生物搜索(SOS)的元启发式方法来求解同一框架下的B-RCP,以寻找可行的切割模式和最小的钢筋总浪费。为了测试所提出的SOS框架的性能,将之前的研究案例设置为基准,然后与PSO进行比较。针对实际项目实例,采用RCP对SOS的性能进行评价和验证。两种情况下的RCP验证结果表明,SOS在减少材料浪费和减少切割图案数量方面都优于PSO。从而验证了SOS是求解RCP的一种竞争性算法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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