2008 |
49 | EE | Ashok K. Goel,
Randall Davis,
John S. Gero:
Multimodal design: An overview.
AI EDAM 22(2): 83-84 (2008) |
2007 |
48 | EE | John S. Gero,
Gregory J. Smith:
Context and Design Agents.
CONTEXT 2007: 220-233 |
47 | EE | John S. Gero:
AI EDAM at 20: Artificial intelligence in designing.
AI EDAM 21(1): 17-18 (2007) |
46 | EE | John S. Gero,
Udo Kannengiesser:
An ontology of situated design teams.
AI EDAM 21(3): 295-308 (2007) |
45 | EE | Andy Dong,
John S. Gero:
Special Issue: Design Computing and Cognition.
AI EDAM 21(4): 315-316 (2007) |
44 | EE | Jeff W. T. Kan,
Zafer Bilda,
John S. Gero:
Comparing entropy measures of idea links in design protocols: Linkography entropy measurement and analysis of differently conditioned design sessions.
AI EDAM 21(4): 367-377 (2007) |
43 | EE | John S. Gero,
Udo Kannengiesser:
A function-behavior-structure ontology of processes.
AI EDAM 21(4): 379-391 (2007) |
2006 |
42 | EE | John S. Gero:
Understanding Situated Design Computing and Constructive Memory: Newton, Mach, Einstein and Quantum Mechanics.
EG-ICE 2006: 285-297 |
41 | EE | Wei Peng,
John S. Gero:
Using a Constructive Interactive Activation and Competition Neural Network to Construct a Situated Agent's Experience.
PRICAI 2006: 21-30 |
40 | EE | Julie R. Jupp,
John S. Gero:
Visual style: Qualitative and context-dependent categorization.
AI EDAM 20(3): 247-266 (2006) |
39 | EE | Udo Kannengiesser,
John S. Gero:
Towards mass customized interoperability.
Computer-Aided Design 38(8): 920-936 (2006) |
38 | EE | Julie R. Jupp,
John S. Gero:
A qualitative feature-based characterization of 2D architectural style.
JASIST 57(11): 1537-1550 (2006) |
2005 |
37 | EE | Ricardo Sosa,
John S. Gero:
A computational study of creativity in design: The role of society.
AI EDAM 19(4): 229-244 (2005) |
2004 |
36 | | Udo Kannengiesser,
John S. Gero:
Using Agents in the Exchange of Product Data.
AIAI 2004: 129-140 |
35 | | John S. Gero,
Frances M. T. Brazier:
Special Issue: Intelligent agents in design.
AI EDAM 18(2): 113 (2004) |
34 | | Rob Saunders,
John S. Gero:
Curious agents and situated design evaluations.
AI EDAM 18(2): 153-161 (2004) |
33 | | Pak-San Liew,
John S. Gero:
Constructive memory for situated design agents.
AI EDAM 18(2): 163-198 (2004) |
32 | | Gourabmoy Nath,
John S. Gero:
Learning while designing.
AI EDAM 18(4): 315-341 (2004) |
2003 |
31 | EE | Ricardo Sosa,
John S. Gero:
Social Change: Exploring Design Influence.
MABS 2003: 106-119 |
30 | EE | David J. Gunaratnam,
Taivas Degroff,
John S. Gero:
Improving neural network models of physical systems through dimensional analysis.
Appl. Soft Comput. 2(4): 283-296 (2003) |
2002 |
29 | EE | John S. Gero:
Computational models of creative designing based on situated cognition.
Creativity & Cognition 2002: 3-10 |
28 | EE | Rob Saunders,
John S. Gero:
How to study artificial creativity.
Creativity & Cognition 2002: 80-87 |
2001 |
27 | | John S. Gero,
Vladimir A. Kazakov:
A Genetic Engineering Approach to Genetic Algorithms.
Evolutionary Computation 9(1): 71-92 (2001) |
26 | EE | John S. Gero,
Rabee M. Reffat:
Multiple representations as a platform for situated learning systems in designing.
Knowl.-Based Syst. 14(7): 337-351 (2001) |
2000 |
25 | | John S. Gero,
Vladimir A. Kazakov:
Adaptive enlargement of state spaces in evolutionary designing.
AI EDAM 14(1): 31-38 (2000) |
24 | EE | Xiao-Guang Shi,
John S. Gero:
Design Families and Design Individuals.
Eng. Comput. (Lond.) 16(3-4): 253-263 (2000) |
23 | EE | John S. Gero,
Haruyuki Fujii:
A computational framework for concept formation for a situated design agent.
Knowl.-Based Syst. 13(6): 361-368 (2000) |
1999 |
22 | EE | John S. Gero:
Representation and Reasoning about Shapes: Cognitive and Computational Studies in Visual Reasoning in Design.
COSIT 1999: 315-330 |
1998 |
21 | | John S. Gero:
Conceptual designing as a sequence of situated acts.
AI in Structural Engineering 1998: 165-177 |
20 | | Michael A. Rosenman,
John S. Gero:
CAD modelling in multidisciplinary design domains.
AI in Structural Engineering 1998: 335-347 |
19 | EE | John S. Gero:
Novel Models in Evolutionary Designing.
SEAL 1998: 381-388 |
18 | EE | Jun H. Jo,
John S. Gero:
Space layout planning using an evolutionary approach.
AI in Engineering 12(3): 149-162 (1998) |
17 | EE | John S. Gero,
Vladimir A. Kazakov:
Evolving design genes in space layout planning problems.
AI in Engineering 12(3): 163-176 (1998) |
16 | EE | John S. Gero:
Concept formation in design.
Knowl.-Based Syst. 11(7-8): 429-435 (1998) |
1997 |
15 | | Thorsten Schnier,
John S. Gero:
Dominant and Recessive Genes in Evolutionary Systems Applied to Spatial Reasoning.
Australian Joint Conference on Artificial Intelligence 1997: 127-136 |
14 | EE | John S. Gero,
Vladimir A. Kazakov:
Learning and re-using information in space layout planning problems using genetic engineering.
AI in Engineering 11(3): 329-334 (1997) |
1996 |
13 | EE | José C. Damski,
John S. Gero:
A logic-based framework for shape representation.
Computer-Aided Design 28(3): 169-181 (1996) |
12 | EE | Michael A. Rosenman,
John S. Gero:
Modelling multiple views of design objects in a collaborative CAD environment.
Computer-Aided Design 28(3): 193-205 (1996) |
11 | EE | John S. Gero:
Creativity, emergence and evolution in design.
Knowl.-Based Syst. 9(7): 435-448 (1996) |
1994 |
10 | | John S. Gero,
Enn Tyugu:
Formal Design Methods for CAD, Proceedings of the IFIP TC5/WG5.2 Workshop on Formal Design Methods for CAD, Tallinn, Estonia, 16-19 June, 1994
Elsevier 1994 |
9 | | John S. Gero:
Towards a model of exploration in computer-aided design.
Formal Design Methods for CAD 1994: 315-336 |
8 | | John S. Gero:
Formal design methods for computer-aided design.
Formal Design Methods for CAD 1994: 353-359 |
7 | | Michael A. Rosenman,
John S. Gero:
That what, the how, and the shy in design.
Applied Artificial Intelligence 8(2): 199-218 (1994) |
1992 |
6 | EE | A. Terry Purcell,
John S. Gero:
Effects of examples on the results of a design activity.
Knowl.-Based Syst. 5(1): 82-91 (1992) |
1991 |
5 | | John S. Gero,
K. W. Tham,
H. S. Lee:
Behavior: A Link between Function and Structure in Design.
IntCAD 1991: 193-225 |
4 | | John S. Gero:
Conference Themes & Predictions.
IntCAD 1991: 447-460 |
1990 |
3 | | John S. Gero:
Design Prototypes: A Knowledge Representation Schema for Design.
AI Magazine 11(4): 26-36 (1990) |
2 | EE | John S. Gero,
Michael A. Rosenman:
A conceptual framework for knowledge-based design research at Sydney University's design computing unit.
AI in Engineering 5(2): 65-77 (1990) |
1987 |
1 | EE | Conrad A. Mackenzie,
John S. Gero:
Learning design rules from decisions and performances.
AI in Engineering 2(1): 2-10 (1987) |