Joshua Clifford Bongard
List of publications from the DBLP Bibliography Server - FAQ
| 2009 | ||
|---|---|---|
| 23 | Krishnanand N. Kaipa, Josh C. Bongard, Andrew N. Meltzoff: Combined structure and motion extraction from visual data using evolutionary active learning. GECCO 2009: 121-128 | |
| 22 | Josh C. Bongard: The impact of jointly evolving robot morphology and control on adaptation rate. GECCO 2009: 1769-1770 | |
| 21 | Joshua S. Auerbach, Josh C. Bongard: Evolution of functional specialization in a morphologically homogeneous robot. GECCO 2009: 89-96 | |
| 2008 | ||
| 20 | Josh C. Bongard: Probabilistic Robotics. Sebastian Thrun, Wolfram Burgard, and Dieter Fox. (2005, MIT Press.) 647 pages. Artificial Life 14(2): 227-229 (2008) | |
| 2007 | ||
| 19 | Max Lungarella, Fumiya Iida, Josh C. Bongard, Rolf Pfeifer: 50 Years of Artificial Intelligence, Essays Dedicated to the 50th Anniversary of Artificial Intelligence Springer 2007 | |
| 18 | Josh C. Bongard: Synthesizing Physically-Realistic Environmental Models from Robot Exploration. ECAL 2007: 806-815 | |
| 17 | Josh C. Bongard: Action-selection and crossover strategies for self-modeling machines. GECCO 2007: 198-205 | |
| 16 | Josh C. Bongard: Exploiting multiple robots to accelerate self-modeling. GECCO 2007: 214-221 | |
| 2006 | ||
| 15 | Max Lungarella, Fumiya Iida, Josh C. Bongard, Rolf Pfeifer: AI in the 21st Century - With Historical Reflections. 50 Years of Artificial Intelligence 2006: 1-8 | |
| 14 | Hod Lipson, Josh C. Bongard, Viktor Zykov, Evan Malone: Evolutionary Robotics for Legged Machines: From Simulation to Physical Reality. IAS 2006: 11-18 | |
| 2005 | ||
| 13 | Viktor Zykov, Josh C. Bongard, Hod Lipson: Co-evolutionary Variance Can Guide Physical Testing in Evolutionary System Identification. Evolvable Hardware 2005: 213-220 | |
| 12 | Josh C. Bongard, Hod Lipson: 'Managed challenge' alleviates disengagement in co-evolutionary system identification. GECCO 2005: 531-538 | |
| 11 | Paul White, Viktor Zykov, Josh C. Bongard, Hod Lipson: Three Dimensional Stochastic Reconfiguration of Modular Robots. Robotics: Science and Systems 2005: 161-168 | |
| 10 | Rolf Pfeifer, Fumiya Iida, Josh C. Bongard: New Robotics: Design Principles for Intelligent Systems. Artificial Life 11(1-2): 99-120 (2005) | |
| 9 | Josh C. Bongard, Hod Lipson: Nonlinear System Identification Using Coevolution of Models and Tests. IEEE Trans. Evolutionary Computation 9(4): 361-384 (2005) | |
| 8 | Josh C. Bongard, Hod Lipson: Active Coevolutionary Learning of Deterministic Finite Automata. Journal of Machine Learning Research 6: 1651-1678 (2005) | |
| 2004 | ||
| 7 | Josh C. Bongard, Hod Lipson: Automated Robot Function Recovery after Unanticipated Failure or Environmental Change using a Minimum of Hardware Trials. Evolvable Hardware 2004: 169-176 | |
| 6 | Josh C. Bongard, Hod Lipson: Automating Genetic Network Inference with Minimal Physical Experimentation Using Coevolution. GECCO (1) 2004: 333-345 | |
| 5 | Josh C. Bongard, Hod Lipson: Automated Damage Diagnosis and Recovery for Remote Robotics. ICRA 2004: 3545-3550 | |
| 2002 | ||
| 4 | Josh C. Bongard, Rolf Pfeifer: Behavioural Selection Pressure Generates Hierarchical Genetic Regulatory Networks. GECCO 2002: 132 | |
| 2001 | ||
| 3 | Josh C. Bongard, Chandana Paul: Making Evolution an Offer It Can't Refuse: Morphology and the Extradimensional Bypass. ECAL 2001: 401-412 | |
| 2000 | ||
| 2 | Josh C. Bongard: The Legion System: A Novel Approach to Evolving Hetrogeneity for Collective Problem Solving. EuroGP 2000: 16-28 | |
| 1999 | ||
| 1 | Josh C. Bongard: Coevolutionary Dynamics of a Multi-population Genetic Programming System. ECAL 1999: 154-158 | |
| 1 | Joshua S. Auerbach | [21] |
| 2 | Fumiya Iida | [10] [15] [19] |
| 3 | Krishnanand N. Kaipa | [23] |
| 4 | Hod Lipson | [5] [6] [7] [8] [9] [11] [12] [13] [14] |
| 5 | Max Lungarella | [15] [19] |
| 6 | Evan Malone | [14] |
| 7 | Andrew N. Meltzoff | [23] |
| 8 | Chandana Paul | [3] |
| 9 | Rolf Pfeifer | [4] [10] [15] [19] |
| 10 | Paul White | [11] |
| 11 | Viktor Zykov | [11] [13] [14] |