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Julio C. Martínez
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2000 – 2009
- 2009
- [j5]Prasant V. Rekapalli, Julio C. Martínez, Vineet R. Kamat:
Algorithm for Accurate Three-Dimensional Scene Graph Updates in High-Speed Animations of Previously Simulated Construction Operations. Comput. Aided Civ. Infrastructure Eng. 24(3): 186-198 (2009) - [c21]Changbum R. Ahn, Prasant V. Rekapalli, Julio C. Martínez, Feniosky Peña-Mora:
Sustainability Analysis of Earthmoving Operations. WSC 2009: 2605-2611 - 2008
- [j4]Vineet R. Kamat, Julio C. Martínez:
Software mechanisms for extensible and scalable 3D visualization of construction operations. Adv. Eng. Softw. 39(8): 659-675 (2008) - 2007
- [j3]Vineet R. Kamat, Julio C. Martínez:
Interactive collision detection in three-dimensional visualizations of simulated construction operations. Eng. Comput. 23(2): 79-91 (2007) - [j2]Vineet R. Kamat, Julio C. Martínez:
Variable-speed object motion in 3D visualizations of discrete-event construction simulation models. J. Inf. Technol. Constr. 12: 293-303 (2007) - [c20]Prasant V. Rekapalli, Julio C. Martínez:
A message-based architechture to enable runtime user interaction on concurrent simulation-animations of construction operations. WSC 2007: 2028-2031 - 2004
- [c19]Vineet R. Kamat, Julio C. Martínez:
Practical 3D Animation of Multiply Articulated Construction Equipment. WSC 2004: 1229-1237 - [c18]Vineet R. Kamat, Julio C. Martínez:
General-Purpose 3D Animation with VITASCOPE. WSC 2004: 1691-1697 - 2003
- [j1]Vineet R. Kamat, Julio C. Martínez:
Automated generation of dynamic, operations level virtual construction scenarios. J. Inf. Technol. Constr. 8: 65-84 (2003) - [c17]Vineet R. Kamat, Julio C. Martínez:
Construction engineering and project management I: variable-speed resource motion in animations of discrete-event process models. WSC 2003: 1518-1526 - 2002
- [c16]Srinath Devulapalli, Julio C. Martínez, Jesus M. de la Garza:
CEPM 4: evaluation of policies for the maintenance of bridges using discrete-event simulation. WSC 2002: 1759-1764 - [c15]Vineet R. Kamat, Julio C. Martínez:
CEPM 4: comparison of simulation-driven construction operations visualization and 4D CAD. WSC 2002: 1765-1770 - 2001
- [c14]Vineet R. Kamat, Julio C. Martínez:
Enabling smooth and scalable dynamic 3D visualization of discrete-event construction simulations. WSC 2001: 1528-1533 - [c13]Julio C. Martínez:
EZStrobe: general-purpose simulation system based on activity cycle diagrams. WSC 2001: 1556-1564 - 2000
- [c12]Vineet R. Kamat, Julio C. Martínez:
3D visualization of simulated construction operations. WSC 2000: 1933-1937
1990 – 1999
- 1999
- [c11]Photios G. Ioannou, Julio C. Martínez:
Who serves whom? dynamic resource matching in an activity-scanning simulation system. WSC 1999: 963-970 - [c10]Haldun Cor, Julio C. Martínez:
A case study in the quantification of a change in the conditions of a highway construction operation. WSC 1999: 1007-1009 - [c9]Kannan Govindan, Michael C. Vorster, Julio C. Martínez:
Developing the statistical parameters for simultaneous variation in final payload and total load time. WSC 1999: 1016-1022 - 1998
- [c8]Julio C. Martínez:
EZStrobe - General-Purpose Simulation System Based on Activity Cycle Diagrams. WSC 1998: 341-348 - [c7]Julio C. Martínez:
Earthmover-Simulation Tool for Earthwork Planning. WSC 1998: 1263-1272 - [c6]Photios G. Ioannou, Julio C. Martínez:
Project Scheduling Using State-based Probablistic Decision Networks. WSC 1998: 1287-1296 - 1997
- [c5]Kannan Govindan, Julio C. Martínez, Michael C. Vorster:
A Framework for Incorporating Dynamic Strategies in Earth-Moving Simulations. WSC 1997: 1119-1126 - 1996
- [c4]Photios G. Ioannou, Julio C. Martínez:
Simulation of complex construction processes. WSC 1996: 1321-1328 - [c3]Photios G. Ioannou, Julio C. Martínez:
Scalable simulation models for construction operations. WSC 1996: 1329-1336 - 1995
- [c2]Julio C. Martínez, Photios G. Ioannou:
Advantages of the Activity Scanning Approach in the Modeling of Complex Construction Processes. WSC 1995: 1024-1031 - 1994
- [c1]Julio C. Martínez, Photios G. Ioannou:
General purpose simulation with stroboscope. WSC 1994: 1159-1166
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