arrow
Return

Learning physical parameters from dynamic scenes

delete2018-08-01
delete29
delete
OA
AI
T
Tomer Ullman *
A
Andreas Stuhlmüller
N
Noah D. Goodman
J
Joshua B. Tenenbaum
DOI:10.1016/j.cogpsych.2017.05.006delete
deleteOriginal
deleteShare
deleteSave
View PDF
Abstract

Abstract

En 中文
Humans acquire their most basic physical concepts early in development, and continue to enrich and expand their intuitive physics throughout life as they are exposed to more and varied dynamical environments. We introduce a hierarchical Bayesian framework to explain how people can learn physical parameters at multiple levels. In contrast to previous Bayesian models of theory acquisition (Tenenbaum, Kemp, Griffiths, & Goodman, 2011), we work with more expressive probabilistic program representations suitable for learning the forces and properties that govern how objects interact in dynamic scenes unfolding over time. We compare our model to human learners on a challenging task of estimating multiple physical parameters in novel microworlds given short movies. This task requires people to reason simultaneously about multiple interacting physical laws and properties. People are generally able to learn in this setting and are consistent in their judgments. Yet they also make systematic errors indicative of the approximations people might make in solving this computationally demanding problem with limited computational resources. We propose two approximations that complement the top-down Bayesian approach. One approximation model relies on a more bottom-up feature-based inference scheme. The second approximation combines the strengths of the bottom-up and top-down approaches, by taking the feature-based inference as its point of departure for a search in physical-parameter space. (C) 2017 Elsevier Inc. All rights reserved.
Keywords:
Learning
Intuitive physics
Probabilistic inference
Physical reasoning
Intuitive theory
AI Summary

AI Summary

Key information extracted from the uploaded paper, including a brief overview, abstract, background, key highlights, visual analysis, and future outlook.

Journal

Cognitive Psychology cover
Cognitive Psychology
IF:
3
Papers:
983
Citations:
7.8K

Organization

S
Stanford University
Scholars:
9.6W
Papers: 8.2W
Citations: 17.0W