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How Human Motion Prediction Quality Shapes Social Robot Navigation Performance in Constrained Spaces

Andrew Stratton, Phani Teja Singamaneni, Pranav Goyal, R. Alami, Christoforos Mavrogiannis
March 10, 2026
Published Date

Research Abstract & Technology Focus

Motivated by the vision of integrating mobile robots closer to humans in warehouses, hospitals, manufacturing plants, and the home, we focus on robot navigation in dynamic and spatially constrained environments. Ensuring human safety, comfort, and efficiency in such settings requires that robots are endowed with a model of how humans move around them. Human motion prediction around robots is especially challenging due to the stochasticity of human behavior, differences in user preferences, and data scarcity. In this work, we perform a methodical investigation of the effects of human motion prediction quality on robot navigation performance, as well as human productivity and impressions. We design a scenario involving robot navigation among two human subjects in a constrained workspace and instantiate it in a user study (N=80) involving two different robot platforms, conducted across two sites from different world regions. Key findings include evidence that: 1) the widely adopted average displacement error is not a reliable predictor of robot navigation performance and human impressions; 2) the common assumption of human cooperation breaks down in constrained environments, with users often not reciprocating robot cooperation, and causing performance degradations; 3) more efficient robot navigation often comes at the expense of human efficiency and comfort.
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How Human Motion Prediction Quality Shapes Social Robot Navigation Performance in Constrained Spaces

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What is the core focus of the research titled 'How Human Motion Prediction Quality Shapes Social Robot Navigation Performance in Constrained Spaces'?

This literature focuses on: Motivated by the vision of integrating mobile robots closer to humans in warehouses, hospitals, manufacturing plants, and the home, we focus on robot navigation in dynamic and spatially constrained environments. Ensuring human safety, comfort, and...

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Yes, highly correlated activity was mapped. An entry titled 'How Human Motion Prediction Quality Shapes Social Robot Navigation Performance in Constrained Spaces' discusses this: Motivated by the vision of integrating mobile robots closer to humans in warehouses, hospitals, manufacturing plants, and the home, we focus on rob...

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Yes, highly correlated activity was mapped. An entry titled 'Show HN: We built a camera only robot vacuum for less than 300$ (Well almost)' discusses this: Cool project! That validation loss curve screams train set memorization without generalization ability.Too little train data, and/or data of insuff...

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