Combining Physical Simulators and Object-Based Networks for Control
April 13, 2019 Β· Declared Dead Β· π IEEE International Conference on Robotics and Automation
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Authors
Anurag Ajay, Maria Bauza, Jiajun Wu, Nima Fazeli, Joshua B. Tenenbaum, Alberto Rodriguez, Leslie P. Kaelbling
arXiv ID
1904.06580
Category
cs.RO: Robotics
Cross-listed
cs.LG
Citations
46
Venue
IEEE International Conference on Robotics and Automation
Last Checked
5 months ago
Abstract
Physics engines play an important role in robot planning and control; however, many real-world control problems involve complex contact dynamics that cannot be characterized analytically. Most physics engines therefore employ . approximations that lead to a loss in precision. In this paper, we propose a hybrid dynamics model, simulator-augmented interaction networks (SAIN), combining a physics engine with an object-based neural network for dynamics modeling. Compared with existing models that are purely analytical or purely data-driven, our hybrid model captures the dynamics of interacting objects in a more accurate and data-efficient manner.Experiments both in simulation and on a real robot suggest that it also leads to better performance when used in complex control tasks. Finally, we show that our model generalizes to novel environments with varying object shapes and materials.
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