A Fuzzy-AHP and House of Quality integrated approach for Lean Construction Concepts Assessment in Off-site Construction

Anas Badreddine, Omar Azakir, A. Itani, M. Al-Hussein
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Abstract

Lean Construction (LC) combines theoretical research and industry best practices in an off-site industrialized construction environment that adopts Lean Manufacturing (LM) concepts and the know-how to reduce waste in the end-to-end lean construction process. Off-site construction industries strive to implement lean manufacturing theory and application to maximize the allocation of their resources, reduce construction waste, and optimize processes to be economically competitive. However, decision-makers usually encounter barriers while selecting the best lean tools for successful integration. Those barriers are organizational priorities, mass customization, process limitation, and improvement consensus. As a result, lean practitioners tend to implement tools such as Value Stream Mapping (VSM), Process Activity Mapping (PAM), Root Cause Diagram (RCD), Failure Mode Effect Analysis (FMEA), Pareto Analysis (PA) to analyze and propose improvements to a manufacturing process effectively. However, the construction industry lacks a tool that can assess the effectiveness of the lean construction concepts implementation. Thus, this paper proposes an innovative approach to select and evaluate the appropriate lean concepts implemented in an off-site industrialized factory. Firstly, the assessment matrix utilizes Fuzzy-AHP in a pairwise comparison to determine the relationships and calculate the correlations between lean concepts based on the designed hierarchy structure. Secondly, the House of Quality (HoQ) matrix will be integrated to prioritize the selection criteria based on the company's strategic requirements and customer requirements. Finally, the proposed multi-criteria multi-decision ranking matrix is able to prioritize the top lean concepts and demonstrate their combinational impact by eliminating participant's subjectivity, bias, and preferences. The proposed assessment matrix was implemented in an off-site panelized construction case study to prove its effectiveness and validity. The results presented the synergies between different lean concepts combinations and their importance in a lean construction environment.
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非现场施工精益施工理念评价的模糊层次分析法和质量屋综合评价方法
精益建筑(LC)结合理论研究和行业最佳实践,在非现场工业化建筑环境中采用精益制造(LM)概念和专门知识,以减少端到端精益建筑过程中的浪费。非现场建筑行业努力实施精益制造理论和应用,以最大限度地分配资源,减少建筑浪费,优化流程,以提高经济竞争力。然而,决策者在为成功集成选择最佳精益工具时通常会遇到障碍。这些障碍是组织优先级、大规模定制、过程限制和改进共识。因此,精益实践者倾向于使用价值流图(VSM)、过程活动图(PAM)、根本原因图(RCD)、失效模式影响分析(FMEA)、帕累托分析(PA)等工具来有效地分析和提出制造过程的改进建议。然而,建筑业缺乏一种工具来评估精益建筑理念实施的有效性。因此,本文提出了一种创新的方法来选择和评估在非现场工业化工厂实施的适当的精益概念。首先,评价矩阵利用模糊层次分析法两两比较确定精益概念之间的关系,并根据设计的层次结构计算精益概念之间的关联度。其次,将根据公司的战略要求和客户的要求,整合质量屋(HoQ)矩阵,优先选择标准。最后,提出的多准则多决策排序矩阵能够通过消除参与者的主观性、偏见和偏好来对精益概念进行优先排序,并展示它们的组合影响。通过一个非现场板式建筑案例分析,验证了该评价矩阵的有效性和有效性。结果显示了不同精益概念组合之间的协同效应及其在精益建筑环境中的重要性。
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