Title :
A new framework of critical chain scheduling in project management
Author :
Suwa, Haruhiko ; Morita, Daisuke ; Sandoh, Hiroaki
Author_Institution :
Setsunan Univ., Neyagawa, Japan
fDate :
March 30 2010-April 1 2010
Abstract :
This paper proposes a new critical chain scheduling method in project management. The authors have already proposed a theoretical model, which provides an optimal total size of dummies to be inserted in the initial baseline schedule of a given project. Dummies, which are occasionally referred to as buffer, are useful to absorb schedule delays caused by a variety of uncertainties. Given the total size of dummies, this study explores for some useful rules under which we should allocate the dummies in the initial baseline schedule to generate a buffered schedule. Some computational experiments derive several important properties of buffered schedules with a view to demonstrating the effectiveness of those rules particularly in critical chain scheduling.
Keywords :
project management; scheduling; critical chain scheduling; initial baseline schedule; project management; project scheduling; schedule delay; Building materials; Concrete; Costs; Degradation; Delay; Processor scheduling; Procurement; Project management; Resource management; Uncertainty; Critical chain scheduling; Project management; Resource constrained project scheduling; project buffer; uncertainty;
Conference_Titel :
Engineering Systems Management and Its Applications (ICESMA), 2010 Second International Conference on
Conference_Location :
Sharjah
Print_ISBN :
978-1-4244-6520-0
Electronic_ISBN :
978-9948-427-14-8