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ANT COLONY OPTIMIZATION (ACO) IN SCHEDULING OVERLAPPING ARCHITECTURAL DESIGN ACTIVITIES

机译:安排重叠式建筑设计活动的蚁群优化(ACO)

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摘要

The increasing complexity of architectural design works refers to the need for high quality design solutions for overlapping activities through a shorter time period. Conventional network analysis techniques such as CPM could only represent sequential processes yet it is unable to handle a process which contains iterations so that it leads to the occurrence of unwanted omission of logic or information links between design activities. Ant Colony Optimization emerged as an efficient metaheuristic technique for solving computational problems in finding good paths through graphs. This research aims to develop an ACO based Design Activity Scheduling model (ACO-DAS) for the scheduling of overlapping architectural design activities and to test the workability of ACO-DAS through a hypothetical run. From the computational results of both CPM and ACO methods, the determination of critical path using ACO-DAS model resulted in a design duration at 50 while that for CPM was as long as 78. The durations of architectural design activities have been significantly shortened by ACO-DAS. ACO-DAS results in shorter design completion time thus it deems more advanced than CPM.
机译:建筑设计作品的复杂性不断增加,这意味着需要在较短的时间内为重叠活动提供高质量的设计解决方案。传统的网络分析技术(例如CPM)只能表示顺序过程,但无法处理包含迭代的过程,从而导致在设计活动之间发生不必要的逻辑或信息链接遗漏。蚁群优化是一种有效的元启发式技术,用于解决通过图查找良好路径的计算问题。这项研究旨在开发一种基于ACO的设计活动计划模型(ACO-DAS),用于计划重叠的建筑设计活动,并通过假设的运行测试ACO-DAS的可操作性。从CPM和ACO方法的计算结果来看,使用ACO-DAS模型确定关键路径的设计工期为50,而CPM的设计工期则为78。ACO大大缩短了建筑设计活动的工期-DAS。 ACO-DAS缩短了设计完成时间,因此,它被认为比CPM更先进。

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