JoulesEye: Energy Expenditure Estimation and Respiration Sensing from Thermal Imagery While Exercising
Rishiraj Adhikary, Maite Sadeh, Nipun Batra, Mayank Goel
Abstract
Smartphones and smartwatches have contributed significantly to fitness monitoring by providing real-time statistics, thanks to accurate tracking of physiological indices such as heart rate. However, the estimation of calories burned during exercise is inaccurate and cannot be used for medical diagnosis. In this work, we present JoulesEye, a smartphone thermal camera-based system that can accurately estimate calorie burn by monitoring respiration rate. We evaluated JoulesEye on 54 participants who performed high intensity cycling and running. The mean absolute percentage error (MAPE) of JoulesEye was 5.8%, which is significantly better than the MAPE of 37.6% observed with commercial smartwatch-based methods that only use heart rate. Finally, we show that an ultra-low-resolution thermal camera that is small enough to fit inside a watch or other wearables is sufficient for accurate calorie burn estimation. These results suggest that JoulesEye is a promising new method for accurate and reliable calorie burn estimation.
Ask about this paper
Ask your agent about it.
Lune has read the top-tier papers around this one, so every answer names the papers it rests on.
Your agent calls
Lunesearch_papers
Free to start. No credit card required.
Terminal
Install the CLIlune papers get 0f3f6b88-a857-44c5-bc59-6ede7daccc74Cited by top-tier papers1
Ask how each one uses itRelated papers
- THOR: Thermal-Guided Hand-Object Reasoning via Adaptive Vision SamplingSoroush Shahi, Farzad Shahabi, Rama Naboulsi, Glenn Fernandes et al.UbiComp 2026
- FeverPhone: Accessible Core-Body Temperature Sensing for Fever Monitoring Using Commodity SmartphonesJoseph Breda, Mastafa Springston, Alex Mariakakis, Shwetak N. PatelUbiComp 2023 · 12 citations
- Hearing Your Calories: Short-Session Calibrated Energy Expenditure Monitoring via Earable Respiratory SensingYetong Cao, Xiaochen Liu, Jianquan Zhao, Dong Ma et al.UbiComp 2026
- Remote Breathing Rate Tracking in Stationary Position Using the Motion and Acoustic Sensors of EarablesTousif Ahmed, Md Mahbubur Rahman, Ebrahim Nemati, Mohsin Yusuf Ahmed et al.CHI 2023 · 32 citations
- Embracing Consumer-level UWB-equipped Devices for Fine-grained Wireless SensingFusang Zhang, Zhaoxin Chang, Jie Xiong, Junqi Ma et al.UbiComp 2023 · 23 citations
