Abstract
Distributed monitoring of electromagnetic radiation has emerged as a critical challenge in modern wireless environments. To address this need, we present a radio frequency identification (RFID)-integrated electromagnetic field detection system that enables rapid and distributed collection of electromagnetic field intensity across the 2.2–6-GHz spectrum. The system achieves a dynamic range of 0.05–60 V/m for electric field monitoring while providing instantaneous visual feedback through colorimetric indicators. Validated for stable operation at bending radii exceeding 30 mm, our solution combines miniaturization, low-power operation, and mechanical flexibility to support scalable multinode deployments. We demonstrate this capability through a 16-element multinode prototype that simultaneously displays field intensities across distributed locations while enabling accurate RFID-based data acquisition. The system was further deployed in an automobile-manufacturing industrial scenario with 11 distributed sensing nodes, which successfully indicate potential interference sources in space and provide both immediate visual alerts and quantifiable data. The proposed sensing paradigm provides an optimized solution for spatially resolved field monitoring in industrial facilities and healthcare environments, where dense deployments of low-profile sensors are desirable for rapid identification of interference sources or mapping of overexposure zones around vulnerable populations.
| Original language | English |
|---|---|
| Pages (from-to) | 35255-35267 |
| Number of pages | 13 |
| Journal | IEEE Sensors Journal |
| Volume | 25 |
| Issue number | 18 |
| DOIs | |
| State | Published - 2025 |
Keywords
- Colorimetric visualization
- conformal electronics
- electromagnetic radiation detection
- radio frequency identification (RFID) sensing
Fingerprint
Dive into the research topics of 'Conformal and Distributed Monitoring of Electromagnetic Emission Enabled by RFID Backscattering and Colorimetric Visualization'. Together they form a unique fingerprint.Cite this
- APA
- Author
- BIBTEX
- Harvard
- Standard
- RIS
- Vancouver