Bridging Requirements, Planning, and Evaluation: A Review of Social Robot Navigation

Author:

Karwowski Jarosław1ORCID,Szynkiewicz Wojciech1ORCID,Niewiadomska-Szynkiewicz Ewa1ORCID

Affiliation:

1. Institute of Control and Computation Engineering, Warsaw University of Technology, 00-665 Warsaw, Poland

Abstract

Navigation lies at the core of social robotics, enabling robots to navigate and interact seamlessly in human environments. The primary focus of human-aware robot navigation is minimizing discomfort among surrounding humans. Our review explores user studies, examining factors that cause human discomfort, to perform the grounding of social robot navigation requirements and to form a taxonomy of elementary necessities that should be implemented by comprehensive algorithms. This survey also discusses human-aware navigation from an algorithmic perspective, reviewing the perception and motion planning methods integral to social navigation. Additionally, the review investigates different types of studies and tools facilitating the evaluation of social robot navigation approaches, namely datasets, simulators, and benchmarks. Our survey also identifies the main challenges of human-aware navigation, highlighting the essential future work perspectives. This work stands out from other review papers, as it not only investigates the variety of methods for implementing human awareness in robot control systems but also classifies the approaches according to the grounded requirements regarded in their objectives.

Publisher

MDPI AG

Reference391 articles.

1. Burgard, W., Cremers, A.B., Fox, D., Hähnel, D., Lakemeyer, G., Schulz, D., Steiner, W., and Thrun, S. (1998, January 26–30). The interactive museum tour-guide robot. Proceedings of the Fifteenth National/Tenth Conference on Artificial Intelligence/Innovative Applications of Artificial Intelligence, Madison, WI, USA. AAAI ’98/IAAI ’98.

2. Thrun, S., Bennewitz, M., Burgard, W., Cremers, A., Dellaert, F., Fox, D., Hahnel, D., Rosenberg, C., Roy, N., and Schulte, J. (1999, January 10–15). MINERVA: A second-generation museum tour-guide robot. Proceedings of the 1999 IEEE International Conference on Robotics and Automation (Cat. No.99CH36288C), Detroit, MI, USA.

3. A survey on human-aware robot navigation;Furnari;Robot. Auton. Syst.,2021

4. Conflict Avoidance in Social Navigation—A Survey;Mirsky;J. Hum. Robot Interact.,2024

5. Evaluation of Socially-Aware Robot Navigation;Gao;Front. Robot. AI,2022

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