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Abstract
Ultra High Frequency Radio Frequency Identification (UHF RFID) technology using transducer-integrated antennas provides a cost-effective option for sensing. A novel setup-independent UHF RFID sensing system that can overcome challenges caused by the measurement setup with a priori unknown mutual distance and orientation between the tag and the read/write device (RWD) is proposed. The concept is based on using off-the-shelf RFID chips having self-tuning capability, which maximizes power transfer coefficient between RFID chip and RFID antenna. An ON-OFF Differential (OOD) measurement is implemented to provide setup-independent sensing. The OOD parameters form a three-dimensional vector that can support more sensing states than prior art using single-dimensional information. Power Transfer Efficiency (PTE) and Tag Sensor Efficiency (TSE) are defined, where PTE is the minimal power transfer coefficient in all sensing states and TSE is the minimal pair-wise Euclidean distance of the OOD parameters. The RFID antenna layout is optimized by optimizing PTE and TSE simultaneously so as to offer sensing robustness without sacrificing communication performance in all sensing states. A water filling level sensor has been designed and evaluated. Theoretical predications are favorably compared with experimental results under different measurement setups, having different relative distances and orientations between the tag and the RWD.
| Original language | English |
|---|---|
| Pages (from-to) | 10509-10517 |
| Journal | IEEE Internet of Things Journal |
| Volume | 8 |
| Issue number | 13 |
| Online published | 30 Dec 2020 |
| DOIs | |
| Publication status | Published - 1 Jul 2021 |
Research Keywords
- Antenna measurements
- Antennas
- differential measurement technique
- Impedance
- RFID tags
- Semiconductor device measurement
- sensors
- setup-independent RFID sensing technique
- UHF measurements
- UHF RFID technology
RGC Funding Information
- RGC-funded
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Dive into the research topics of 'Setup-Independent UHF RFID Sensing Technique Using Multi-Dimensional Differential Measurement'. Together they form a unique fingerprint.Projects
- 1 Finished
-
GRF: AC/DC Converter Architecture for Vibration Energy Harvesting
CHUNG, S. H. H. (Principal Investigator / Project Coordinator) & TSE, W. T. P. (Co-Investigator)
1/11/18 → 18/10/22
Project: Research
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