JOURNAL ARTICLE

Planning and Scheduling Highway Construction

Ahmed HassaneinOsama Moselhi

Year: 2004 Journal:   Journal of Construction Engineering and Management Vol: 130 (5)Pages: 638-646   Publisher: American Society of Civil Engineers

Abstract

This paper presents a model designed to integrate the planning and scheduling phases of highway construction projects, focusing primarily on the planning aspects. The model automatically generates the work breakdown structure (WBS) and precedence network respecting job logic and stores a list of construction operations typically encountered in highway projects. The generated network can subsequently be modified to suit the unique requirements of the project being considered. An object-oriented model is developed for planning highway construction operations. The model employs resource-driven scheduling in order to suit the repetitive nature of this class of projects. It accounts for (1) resource availability; (2) multiple preceding and succeeding activities; (3) transverse obstructions; (4) activities with varying quantities of work along the highway length; (5) the impact of inclement weather on crew productivity; and (6) the beneficial effect of the learning curve. At the core of the model is a relational database designed to store available resources and their respective unavailability periods. The model enables both: (1) activities executed by own force; and (2) activities subcontracted out. The model is incorporated in a prototype software that operates in the Microsoft Windows environment and generates schedules in both graphical and tabular formats. An example project is analyzed to demonstrate the features of the developed model.

Keywords:
Unavailability Scheduling (production processes) Computer science Software Project planning Operations research Transport engineering Software engineering Systems engineering Industrial engineering Project management Engineering Operations management Operating system Reliability engineering

Metrics

52
Cited By
5.15
FWCI (Field Weighted Citation Impact)
17
Refs
0.94
Citation Normalized Percentile
Is in top 1%
Is in top 10%

Citation History

Topics

BIM and Construction Integration
Physical Sciences →  Engineering →  Building and Construction
Resource-Constrained Project Scheduling
Social Sciences →  Decision Sciences →  Management Science and Operations Research
Software Engineering Techniques and Practices
Physical Sciences →  Computer Science →  Information Systems

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