Expanding finance-based scheduling to devise overall-optimized project schedules

Elazouni, A M and Metwally, F G (2007) Expanding finance-based scheduling to devise overall-optimized project schedules. Journal of Construction Engineering and Management, 133(1), pp. 86-90. ISSN 0733-9364

Abstract

Construction contractors often finance projects using bank credit lines that allow contractors to withdraw money up to certain credit limits. Finance-based scheduling provides schedules that ensure that the contractor's indebtedness at any time during the construction stage does not exceed the credit limit. Generally, constricted credit limits tend to yield prolonged schedules. Provided that credit limits can be adequately relaxed, compressed schedules of compressed-duration activities can be attained. Devising a compressed schedule calls for the incorporation of time-cost trade-off (TCT) analysis to strike a balance between the decreased overhead costs and the increased direct costs of the activities. Since employing TCT analysis usually causes great fluctuations in the daily resource requirements by mixing compressed-duration activities of high resource demand with others of low resource demand, therefore, the need for resource management techniques becomes inevitable to ensure efficient utilization of resources. This note used genetic algorithms to expand finance-based scheduling to devise schedules for relaxed credit limits. A prototype system was developed and coded using VISUAL BASIC, then demonstrated using a five-activity example project. The prototype was validated by comparing the results with those obtained by using the integer programming. Expanding finance-based scheduling to handle the whole spectrum of credit limits helps devise overall-optimized schedules that consider cash, time, cost, and resources.

Item Type: Article
Uncontrolled Keywords: algorithms; contractors; financial management; optimization; scheduling
Index terms: time-cost trade-off, integer programming, resource management, duration, direct cost, financial management, construction contractor, prototype, genetic algorithm, scheduling
Subjects: economic analysis, modelling and simulation, operations research, control systems, practitioner, project controls, quantity surveying, algorithms, economics
Topics: Time Control, Digital Applications, Roles and Professions, Risk Management, Business Strategy, Cost Management, Engineering Principles, Project Management
Descriptive scope: 2 PC

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