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Tradeoff time cost quality in repetitive construction project using fuzzy logic approach and symbiotic organism search algorithm

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TLDR
F fuzzy logic is utilized to model the uncertainty embedding α-cut approach and it is shown that the proposed model is powerful to explore the solution for the shortest project duration with minimum incurred cost and high overall quality in the construction project.
Abstract
Time cost and quality are three important factors in planning and controlling construction projects. Getting these factors in balance, which minimizes the project duration, the total project cost, and maximizes the total quality could define the success of a construction project. Aside from planning and estimating the project properly, a consideration of uncertainty while implementing the project is needed to represent a more realistic outcome for time, cost, and quality trade-off (TCQT) problem in construction projects. In this paper, fuzzy logic is utilized to model the uncertainty embedding α-cut approach to see the effect of the uncertainty on the time, cost, and quality of the project. Then multi-objective Symbiotic Organism Search (SOS) algorithm is applied to find a set of the optimal solution in different uncertainty levels and provide the project manager several possible actions to implement the project. Two numerical case studies of a repetitive construction project were analyzed to see the effectiveness of the model and its capability to solve the TCQT problem in the construction project. The results showed that the proposed model is powerful to explore the solution for the shortest project duration with minimum incurred cost and high overall quality in the construction project. In comparison to the other widely used methods and other algorithms, the proposed model is proven to be effective and competitive in solving the TCQT problem.

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Citations
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Journal ArticleDOI

Trading off Time–Cost–Quality in Construction Project Scheduling Problems with Fuzzy SWARA–TOPSIS Approach

TL;DR: The fuzzy multi-criteria decision-making (MCDM) methods are exploited to choose the best mode for performing each activity for construction project scheduling so that the projects can be completed in fewer durations and costs along with higher quality.
Journal ArticleDOI

Cooperative Efficiency Evaluation System for Intelligent Transportation Facilities Based on the Variable Weight Matter Element Extension

TL;DR: In this paper , a structural model of four cooperative development elements, including functional cooperative, operational cooperative, information cooperative, and operation cooperative, is constructed with the guidance of system coordination and a cooperative efficiency evaluation system is established based on it.
Journal ArticleDOI

A Mathematical Model and Two Fuzzy Approaches Based on Credibility and Expected Interval for Project Cost-Quality-Risk Trade-Off Problem in Time-Constrained Conditions

M. H. Haghighi, +1 more
- 28 Jun 2022 - 
TL;DR: In this article , two approaches are presented to handle proposed fuzzy multi-objective mathematical model under fuzzy uncertainty to deal with the project cost-risk-quality tradeoff problem (CRQT) under time constraints.
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A Hybrid GA-GSA Algorithm for Optimizing the Performance of an Industrial System by Utilizing Uncertain Data

TL;DR: This chapter presents a novel hybrid GA-GSA algorithm to permit the reliability analyst to increase the performance of the system by utilizing the uncertain data and maximizes the Reliability, Availability, and Maintainability parameters simultaneously for increasing the performance and productivity of theSystem.
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Project scheduling under uncertainty using fuzzy modelling and solving techniques

TL;DR: A new technique is provided that keeps uncertainty at all steps of the modelling and solving procedure by considering a fuzzy modelling of the workload inspired from the fuzzy/possibilistic approach.
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A novel multi-objective evolutionary algorithm with fuzzy logic based adaptive selection of operators: FAME

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How to optimize success in construction projects?

Optimize success in construction projects by balancing time, cost, and quality using fuzzy logic and Symbiotic Organism Search algorithm for efficient planning and control.