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Time/cost optimization using hybrid evolutionary algorithm in construction project scheduling
AbstractThis paper deals with construction project scheduling. In the literature on the subject one can find such scheduling methods as: the Linear Scheduling Model (LSM), Line of Balance (LOB) charts and CMP/PERT network planning. The methods take into account several objective functions: the least cost, the least time, limited resources, work priorities, etc., both in the deterministic and probabilistic approach. The paper presents an analysis of the time/cost relationship, performed using time coupling method TCM III. A modified hybrid evolutionary algorithm (HEA) developed by Bożejko and Wodecki (A Hybrid Evolutionary Algorithm for Some Discrete Optimization Problems. IEEE Computer Society, 325–331, 2005) was used for optimization.
Time/cost optimization using hybrid evolutionary algorithm in construction project scheduling
AbstractThis paper deals with construction project scheduling. In the literature on the subject one can find such scheduling methods as: the Linear Scheduling Model (LSM), Line of Balance (LOB) charts and CMP/PERT network planning. The methods take into account several objective functions: the least cost, the least time, limited resources, work priorities, etc., both in the deterministic and probabilistic approach. The paper presents an analysis of the time/cost relationship, performed using time coupling method TCM III. A modified hybrid evolutionary algorithm (HEA) developed by Bożejko and Wodecki (A Hybrid Evolutionary Algorithm for Some Discrete Optimization Problems. IEEE Computer Society, 325–331, 2005) was used for optimization.
Time/cost optimization using hybrid evolutionary algorithm in construction project scheduling
Rogalska, Magdalena (author) / Bożejko, Wojciech (author) / Hejducki, Zdzisław (author)
Automation in Construction ; 18 ; 24-31
2008-04-09
8 pages
Article (Journal)
Electronic Resource
English
Time-cost optimization using hybrid evolutionary algorithm in construction project scheduling
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