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SocNavBench: A Grounded Simulation Testing Framework for Evaluating Social Navigation (2103.00047v2)

Published 26 Feb 2021 in cs.RO and cs.HC

Abstract: The human-robot interaction (HRI) community has developed many methods for robots to navigate safely and socially alongside humans. However, experimental procedures to evaluate these works are usually constructed on a per-method basis. Such disparate evaluations make it difficult to compare the performance of such methods across the literature. To bridge this gap, we introduce SocNavBench, a simulation framework for evaluating social navigation algorithms. SocNavBench comprises a simulator with photo-realistic capabilities and curated social navigation scenarios grounded in real-world pedestrian data. We also provide an implementation of a suite of metrics to quantify the performance of navigation algorithms on these scenarios. Altogether, SocNavBench provides a test framework for evaluating disparate social navigation methods in a consistent and interpretable manner. To illustrate its use, we demonstrate testing three existing social navigation methods and a baseline method on SocNavBench, showing how the suite of metrics helps infer their performance trade-offs. Our code is open-source, allowing the addition of new scenarios and metrics by the community to help evolve SocNavBench to reflect advancements in our understanding of social navigation.

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Authors (5)
  1. Abhijat Biswas (8 papers)
  2. Allan Wang (9 papers)
  3. Gustavo Silvera (2 papers)
  4. Aaron Steinfeld (17 papers)
  5. Henny Admoni (24 papers)
Citations (57)