REFERENCES
- [1] Perera, S., “Linear Programming Solution to Network Compression,” J. of Constr. Division, ASCE, Vol. 106, pp. 315327 (1980).
- [2] Demeulemesster, E. L., Herroelen, W. S. and Elmaghraby, S. E., “Optimal Procedures for the Discrete Time/Cost Trade-Off Problem in Project Networks,” European J. of Operational Research, Vol. 88, pp. 5068 (1996).
- [3] Liu, L., Burns, S. A. and Feng, C.-W., “Construction Time-Cost Trade-Off Analysis Using LP/IP Hybrid Method,” J. of Constr. Engrg. And Mgmt., ASCE, Vol. 121, pp. 446454 (1995).
- [4] Sakellaropoulos, S. and Chassiakos, A. P., “Project Time-Cost Analysis under Generalised Precedence Relations,” Advancing Engrg. Software, Vol. 35, pp. 715724 (2004).
- [5] Yang, I.-T., “Chance-Constrained Time-Cost Tradeoff Analysis Considering Funding Variability,” J. of Constr. Engrg. and Mgmt., ASCE, Vol. 131, pp. 10021012 (2005).
- [6] Leu, S.-S. and Yang, C.-H., “GA-Based Multicriteria Optimal Model for Construction Scheduling,” J. of Constr. Engrg. And Mgmt., ASCE, Vol. 125, pp. 420 427 (1998).
- [7] Feng, C.-W., Liu, L. and Burns, S. A., “Using Genetic Algorithms to Solve Construction Time-Cost TradeOff Problems,” J. of Comp. in Civil Engrg., ASCE, Vol. 11, pp. 184189 (1997).
- [8] Li, H. and Love, P., “Using Improved Genetic Algorithms to Facilitating Time-Cost Optimization,” J. of Constr. Engrg. and Mgmt., ASCE, Vol. 123, pp. 233 237 (1997).
- [9] Que, B. C., “Incorporating Practicability into Genetic Algorithm-Based Time-Cost Optimization,” J. of Constr. Engrg. and Mgmt., ASCE, Vol. 128, pp. 139143 (2002).
- [10] Zheng, X. M., Ng, S. T. and Kumaraswamy, M. M., “Applying a Genetic Algorithm-Based Multiobjective Approach for Time-Cost Optimization,” J. of Constr. Engrg. and Mgmt., ASCE, Vol. 130, pp. 168176 (2004).
- [11] Fulkerson, D., “A Network Flow Computation for Project Cost Curves,” Mgmt. Science, Vol. 7, pp. 167178 (1961).
- [12] Berman, F. B., “Resource Allocation in a Pert Network under Continuous Activity Time-Cost Functions,” Mgmt. Science, Vol. 10, pp. 724735 (1964).
- [13] Li, H., Chao, J.-H. and Love, P. E. D., “Using Machine Learning and GA to Solve Time-Cost Trade-Off Problems,” J. of Constr. Engrg. and Mgmt., ASCE, Vol. 125, pp. 347353 (1999).
- [14] Babu, A. J. G. and Suresh, N., “Project Management with Time, Cost, and Quality Considerations,” European J. of Operational Research, Vol. 88, pp. 320327 (1996).
- [15] Khang, D. B. and Myint, Y. M., “Time, Cost and Quality Trade-off in Project Management: A Case Study,” International J. of Project Mgmt, Vol. 17, pp. 249256 (1999).
- [16] El-Rayes, K. and Kandil, A., “Time-Cost-Quality Trade-Off Analysis for Highway Construction,” J. of Constr. Engrg. and Mgmt., ASCE, Vol. 131, pp. 477 486 (2005).
- [17] Holland, J., Adaptation in Natural and Artificial System, University of Michigan Press, Ann Arbor, MI (1975).
- [18] Goldberg, D. E., Genetic Algorithms in Search, Optimization and Machine Learning. Reading, MA: Addition-Wesley (1989).
- [19] Gen, M. and Cheng, R., Genetic Algorithms and Engineering Optimization. New York: Wiley (1999).
- [20] Cheng, T.-M. and Feng, C.-W., “An Effective Simulation Mechanism for Construction Operations,” Automation in Construction, Vol. 12, pp. 227244 (2003).
- [21] Halpin, D. W. and Riggs, L. S., Planning and Analysis of Construction Operations, Wiley, New York (1992).
- [22] Cheng, T.-M. and Wu, S.-T., COST User Manual, Department of Construction Engineering, Chaoyang University, Taiwan (2001).