The Robotability Score: Enabling Harmonious Robot Navigation on Urban Streets
Matthew Franchi, Maria Teresa Parreira, Fanjun Bu, Wendy Ju
Abstract
This paper introduces the Robotability Score (R), a novel metric that quantifies the suitability of urban environments for autonomous robot navigation. Through expert interviews and surveys, we identify and weigh key features contributing to R for wheeled robots on urban streets. Our findings reveal that pedestrian density, crowd dynamics and pedestrian flow are the most critical factors, collectively accounting for 28% of the total score. Computing robotability across New York City yields significant variation; the area of highest R is 3.0 times more “robotable” than the area of lowest R. Deployments of a physical robot on high and low robotability areas show the adequacy of the score in anticipating the ease of robot navigation. This new framework for evaluating urban landscapes aims to reduce uncertainty in robot deployment while respecting established mobility patterns and urban planning principles, contributing to the discourse on harmonious human-robot environments.
Ask about this paper
Your agent reads all of it.
Lune indexed this paper to the last equation, along with the top-tier papers that cite it. Ask a question and the answer quotes them.
Cited by top-tier papers1
Ask how each one uses itBuilds on3
- Trash in Motion: Emergent Interactions with a Robotic TrashcanBarry Brown, Fanjun Bu, Ilan Mandel, Wendy JuCHI 2024 · 25 citations
- From Agent Autonomy to Casual Collaboration: A Design Investigation on Help-Seeking Urban RobotsXinyan Yu, Marius Hoggenmüller, Martin TomitschCHI 2024 · 12 citations
- YOLOv7: Trainable Bag-of-Freebies Sets New State-of-the-Art for Real-Time Object DetectorsChien-Yao Wang, Alexey Bochkovskiy, Hong-Yuan Mark LiaoCVPR 2023
Related papers
- Peek into the 'White-Box': A Field Study on Bystander Engagement with Urban Robot UncertaintyXinyan Yu, Marius Hoggenmüller, Tram Thi Minh Tran, Yiyuan Wang et al.CHI 2025 · 5 citations
- Roaming with a Robot: Analyzing the Experiences and Understanding the Dimensions of Designing Human-Robot Walking InteractionsEshtiak Ahmed, Çaglar Genç, Velvet Spors, Juho Hamari et al.CHI 2026 · 1 citation
- "Too Crowded for a Robot?": Modeling Human Acceptance Criteria for Elevator-Riding RobotsSeoktae Kim, Sangyoung Cho, Kahyeon Kim, Sure BakCHI 2026 · 2 citations
- MetaUrban: An Embodied AI Simulation Platform for Urban MicromobilityWayne Wu, Honglin He, Jack He, Yiran Wang et al.ICLR 2025
- Co-design Accessible Public Robots: Insights from People with Mobility Disability, Robotic Practitioners and Their CollaborationsHoward Ziyu Han, Franklin Mingzhe Li, Alesandra Baca Vazquez, Daragh Byrne et al.CHI 2024 · 16 citations
