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Classification of production systems for industrialized building: a production strategy perspective

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  • Henric Jonsson
  • Martin Rudberg

Abstract

The purpose is to develop a matrix for classifying production systems for construction with various degrees of industrialization. Previous attempts to classify industrialized production systems for construction focus on dimensions such as the design process, the product technology, or the supply chain structure, but none of them acknowledge the importance of how orders are actually won in the market and that different market segments have different requirements. Using production strategy theory as a base, a matrix is developed linking market requirements, via the product offering, to the design of the production system. The matrix positions typical production systems based on their respective degrees of product standardization and volumes relative to the degree of offsite production. Similar to production systems in manufacturing, production systems for construction also deliver manufacturing outputs at different levels, indicating that the choice of production system will affect the competitiveness of the company. The applicability of the matrix is exemplified through three case illustrations of concepts for industrialized building, and these show that the matrix can be used to analyse the production systems' relative strengths and weaknesses. The matrix can also be used as a guide when developing new, or adjusting existing, production systems for industrialized building so that they will match market requirements and offer competitiveness.

Suggested Citation

  • Henric Jonsson & Martin Rudberg, 2014. "Classification of production systems for industrialized building: a production strategy perspective," Construction Management and Economics, Taylor & Francis Journals, vol. 32(1-2), pages 53-69, February.
  • Handle: RePEc:taf:conmgt:v:32:y:2014:i:1-2:p:53-69
    DOI: 10.1080/01446193.2013.812226
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    Cited by:

    1. Vassiliades, C. & Barone, G. & Buonomano, A. & Forzano, C. & Giuzio, G.F. & Palombo, A., 2022. "Assessment of an innovative plug and play PV/T system integrated in a prefabricated house unit: Active and passive behaviour and life cycle cost analysis," Renewable Energy, Elsevier, vol. 186(C), pages 845-863.
    2. Fernanda Saidelles Bataglin & Daniela Dietz Viana & Carlos Torres Formoso, 2022. "Design Principles and Prescriptions for Planning and Controlling Engineer-to-Order Industrialized Building Systems," Sustainability, MDPI, vol. 14(24), pages 1-22, December.
    3. Shengxi Zhang & Zhongfu Li & Shengbin Ma & Long Li & Mengqi Yuan, 2022. "Critical Factors Influencing Interface Management of Prefabricated Building Projects: Evidence from China," Sustainability, MDPI, vol. 14(9), pages 1-20, April.
    4. Cannas, Violetta G. & Gosling, Jonathan & Pero, Margherita & Rossi, Tommaso, 2020. "Determinants for order-fulfilment strategies in engineer-to-order companies: Insights from the machinery industry," International Journal of Production Economics, Elsevier, vol. 228(C).

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