A new task representation makes sequential robot plans reactive and robust by always running the most downstream available operator, with a probabilistic convergence guarantee.
Neural Task Graphs: Generalizing to Unseen Tasks from a Single Video Demonstration
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abstract
Our goal is to generate a policy to complete an unseen task given just a single video demonstration of the task in a given domain. We hypothesize that to successfully generalize to unseen complex tasks from a single video demonstration, it is necessary to explicitly incorporate the compositional structure of the tasks into the model. To this end, we propose Neural Task Graph (NTG) Networks, which use conjugate task graph as the intermediate representation to modularize both the video demonstration and the derived policy. We empirically show NTG achieves inter-task generalization on two complex tasks: Block Stacking in BulletPhysics and Object Collection in AI2-THOR. NTG improves data efficiency with visual input as well as achieve strong generalization without the need for dense hierarchical supervision. We further show that similar performance trends hold when applied to real-world data. We show that NTG can effectively predict task structure on the JIGSAWS surgical dataset and generalize to unseen tasks.
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cs.RO 1years
2019 1verdicts
CONDITIONAL 1representative citing papers
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Representing Robot Task Plans as Robust Logical-Dynamical Systems
A new task representation makes sequential robot plans reactive and robust by always running the most downstream available operator, with a probabilistic convergence guarantee.