Abstract
Featured Application: A feasibility-stage experimental platform for evaluating real-time moving-average remote photoplethysmography (MA-rPPG) using a drone-mounted sensing assistant integrated with a smart mirror interface for flexible, contactless physiological monitoring. A previously validated smart mirror system is reused as a unified visualization and synchronization frontend, enabling controlled laboratory data acquisition and compared with MA-rPPG measurements obtained from a fixed desktop camera setup using the same model. Remote photoplethysmography (rPPG) enables contactless estimation of cardiovascular signals from video, but most existing studies assume a fixed, stationary camera. This study investigates the feasibility of performing real-time moving-average rPPG (MA-rPPG) using a drone-mounted camera, where platform motion, vibration, and viewing distance introduce additional challenges. Building on our previously validated real-time MA-rPPG smart mirror platform, we reuse the smart mirror interface as a unified frontend for visualization, synchronization, and logging while adapting the MA-rPPG pipeline to operate on live video streamed from an off-the-shelf DJI Tello micro-drone. Feasibility experiments were conducted with 10 participants under controlled indoor lighting and constrained flight conditions, where the drone maintained a stable hover in front of a standing subject and facial video was processed in real time to estimate heart rate from a forehead region of interest. To avoid cross-modality bias and clarify the effect of the aerial imaging platform, drone-derived MA-rPPG outputs were compared against a fixed desktop-camera MA-rPPG reference using the same trained model, enabling a controlled, like-for-like evaluation. The results indicate that continuous heart-rate estimation from a drone camera is feasible in our controlled hover-only setup, while agreement tended to vary with hover stability and effective facial resolution. This work is presented strictly as a feasibility-stage investigation and does not claim clinical validity. The findings provide an experimental baseline and operating-envelope insight for future motion-robust rPPG on mobile and aerial health-sensing platforms.
| Original language | English |
|---|---|
| Article number | 2307 |
| Journal | Applied Sciences (Switzerland) |
| Volume | 16 |
| Issue number | 5 |
| DOIs | |
| State | Published - Mar 2026 |
Keywords
- contactless heart-rate monitoring
- drone-mounted camera
- feasibility study
- moving-average rPPG (MA-rPPG)
- real-time physiological sensing
- remote photoplethysmography (rPPG)
- smart mirror interface
- unmanned aerial vehicle (UAV)
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Dive into the research topics of 'Feasibility of Drone-Mounted Camera for Real-Time MA-rPPG in Smart Mirror Systems'. Together they form a unique fingerprint.Press/Media
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Researchers from Dongguk University Discuss Research in Applied Sciences (Feasibility of Drone-Mounted Camera for Real-Time MA-rPPG in Smart Mirror Systems)
Jung, J. W., Baek, J. W. & Jung, J. W.
30/03/26
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