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Ian Flood
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2020 – today
- 2024
- [j19]Xiaoyan Zhou, Ian Flood:
Optimization and evaluation of a neural network based policy for real-time control of construction factory processes. J. Inf. Technol. Constr. 29: 84-98 (2024) - 2023
- [j18]Yueren Wang, Ian Flood:
Machine learning approaches to determining truck type from bridge loading response. J. Inf. Technol. Constr. 28: 346-359 (2023) - [c12]Ian Flood, Xiaoyan Zhou:
Optimization of a Deep Reinforcement Learning Policy for Construction Manufacturing Control. SIMULTECH 2023: 82-91 - 2022
- [c11]Ian Flood, Paris D. L. Flood:
Intelligent Control of Construction Manufacturing Processes using Deep Reinforcement Learning. SIMULTECH 2022: 112-122 - 2021
- [j17]Yuanxin Zhang, Zeyu Wang, Jiaying Deng, Zaijing Gong, Ian Flood, Yueren Wang:
Framework for a Blockchain-Based Infrastructure Project Financing System. IEEE Access 9: 141555-141570 (2021)
2010 – 2019
- 2018
- [c10]Hashem Izadi Moud, Alireza Shojaei, Ian Flood, Xun Zhang:
Monte Carlo based Risk Analysis of Unmanned Aerial Vehicle Flights over Construction Job Sites. SIMULTECH 2018: 451-458 - 2016
- [j16]Sang C. Lhee, Raja R. A. Issa, Ian Flood:
Using particle swarm optimization to predict cost contingency on transportation construction projects. J. Inf. Technol. Constr. 21: 504-516 (2016) - [j15]Raja R. A. Issa, Ian Flood:
Special Issue on the 2014 International Conference on Computing in Civil and Building Engineering. J. Comput. Civ. Eng. 30(5) (2016) - [c9]Jintaek Ock, Raja R. A. Issa, Ian Flood:
Smart Building Energy Management Systems (BEMS) simulation conceptual framework. WSC 2016: 3237-3245 - [c8]Jintaek Ock, Raja R. A. Issa, Ian Flood:
Analysis tools for stormwater controls on construction sites. WSC 2016: 3337-3344 - 2015
- [c7]Yueren Wang, Ian Flood:
Empirically-based modelling approaches to the truck weigh-in-motion problem. WSC 2015: 3288-3297 - 2014
- [j14]Sang C. Lhee, Ian Flood, Raja R. A. Issa:
Development of a two-step neural network-based model to predict construction cost contingency. J. Inf. Technol. Constr. 19: 399-411 (2014) - [j13]Raja R. A. Issa, Ian Flood:
Special Issue on 2012 International Conference on Computing in Civil Engineering. J. Comput. Civ. Eng. 28(5) (2014) - [c6]Ian Flood:
Modeling construction manufacturing processes using foresight. WSC 2014: 3331-3340 - 2013
- [b1]Ian Flood:
Graph theoretic methods for radio equipment selection. Cardiff University, UK, 2013 - 2011
- [c5]Ian Flood:
Foresight: a graphically based approach to modeling construction processes. WSC 2011: 3472-3483 - 2010
- [c4]Ian Flood:
Foresight versus simulation: Construction planning using graphical constraint-based modeling. WSC 2010: 3015-3024
2000 – 2009
- 2009
- [j12]Ian Flood, Bryan T. Bewick, Robert J. Dinan, Hani A. Salim:
Modeling blast wave propagation using artificial neural network methods. Adv. Eng. Informatics 23(4): 418-423 (2009) - [c3]Ian Flood:
A Hierarchical Constraint-based Approach to Modeling Construction and Manufacturing Processes. WSC 2009: 2583-2592 - 2008
- [j11]Ian Flood:
Towards the next generation of artificial neural networks for civil engineering. Adv. Eng. Informatics 22(1): 4-14 (2008) - 2007
- [c2]Ian Flood:
Project planning using an interactive, structured modeling environment. WSC 2007: 2019-2027 - 2006
- [c1]Ian Flood:
Next Generation Artificial Neural Networks and Their Application to Civil Engineering. EG-ICE 2006: 206-221 - 2003
- [j10]Raja R. A. Issa, Ian Flood, Gul Caglasin:
A survey of e-business implementation in the US construction industry. J. Inf. Technol. Constr. 8: 15-28 (2003)
1990 – 1999
- 1999
- [j9]Liang Zhu, Paul M. Schonfeld, Yeon Myung Kim, Ian Flood, Ching-Jung Ting:
Queuing network analysis for waterways with artificial neural networks. Artif. Intell. Eng. Des. Anal. Manuf. 13(5): 365-375 (1999) - [j8]Ian Flood:
Modeling dynamic engineering processes using radial-Gaussian neural networks. J. Intell. Fuzzy Syst. 7(4): 373-385 (1999) - 1998
- [j7]Ian Flood, Nicolas Gagarin, Nabil A. Kartam:
Modelling earthquake accelerograms using neural networks and linear predictors. Artif. Intell. Eng. Des. Anal. Manuf. 12(3): 243-258 (1998) - [j6]Ian Flood, Nabil A. Kartam:
A Binary Classifier with applications to poorly defined engineering problems. Artif. Intell. Eng. Des. Anal. Manuf. 12(3): 259-272 (1998) - 1997
- [j5]H. Al-Tabtabai, Nabil A. Kartam, Ian Flood, A. P. Alex:
Construction project control using artificial neural networks. Artif. Intell. Eng. Des. Anal. Manuf. 11(1): 45-57 (1997) - 1996
- [j4]Ian Flood:
Simulating the behavior of poorly understood continua using neural networks. Artif. Intell. Eng. Des. Anal. Manuf. 10(5): 391-400 (1996) - 1995
- [j3]Nabil A. Kartam, Ian Flood, Tanit Tongthong:
Integrating knowledge-based systems and artificial neural networks for engineering. Artif. Intell. Eng. Des. Anal. Manuf. 9(1): 13-22 (1995) - [j2]Ian Flood, Kenneth Worley:
An artificial neural network approach to discrete-event simulation. Artif. Intell. Eng. Des. Anal. Manuf. 9(1): 37-49 (1995) - [j1]Ian Flood:
Performing calculus operations on poorly understood engineering functions using neural networks. Artif. Intell. Eng. Des. Anal. Manuf. 9(5): 419-426 (1995)
Coauthor Index
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