Anytime, Anywhere: Human Arm Pose from Smartwatch Data for Ubiquitous Robot Control and Teleoperation
Abstract
Domain fit: AI-adjacent · Paper appears method- or tooling-adjacent to AI workflows with partial ecosystem coverage.
This work devises an optimized machine learning approach for human arm pose estimation from a single smart-watch. Our approach results in a distribution of possible wrist and elbow positions, which allows for a measure of uncertainty and the detection of multiple possible arm posture solutions, i.e., multimodal pose distributions. Combining estimated arm postures with speech recognition, we turn the smartwatch into a ubiquitous, low-cost and versatile robot control interface. We demonstrate in two use-cases that this intuitive control interface enables users to swiftly intervene in robot behavior, to temporarily adjust their goal, or to train completely new control policies by imitation. Extensive experiments show that the approach results in a 40% reduction in prediction error over the current state-of-the-art and achieves a mean error of 2.56 cm for wrist and elbow positions.
Results and benchmarks
This work devises an optimized machine learning approach for human arm pose estimation from a single smart-watch.
Benchmark evidence is limited
Evidence graph: 3 refs, 3 links.
Utility signals: depth 70/100, grounding 75/100, status medium.
Implementation
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Time to first repro: a few days
PaoPaoRobot/ICRA2019-paper-list is the closest maintained adjacent implementation (Matches contextual method/domain keyword: robot). It is not paper-verified; validate algorithm and evaluation setup against the paper before trusting reported metrics. Community adoption signal: 298 GitHub stars.
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Reproduction readiness
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Hardware requirements
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Validation caveat
Repositories and ecosystem
Closest related implementations
These are not paper-verified. Use them as reference points when no direct implementation is available.
- PaoPaoRobot/ICRA2019-paper-list Adjacent · Confidence: Medium · 298 stars
Matches contextual method/domain keyword: robot
- Tavish9/awesome-daily-AI-arxiv Adjacent · Confidence: Low · 113 stars
Matches contextual method/domain keyword: robot
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Hugging Face artifacts
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Research context
5
Citations
31
References
Tasks
Teleoperation, Computer science, Smartwatch, Robot, Humanoid robot, Imitation, Interface (matter), Robot control
Methods
None detected
Domains
Artificial intelligence, Computer vision
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