| Literature DB >> 35607659 |
Mathieu Cassel1, Oldrich Navratil2, Franck Perret2, Hervé Piégay1.
Abstract
We present a datalogger based on Arduino cards and commercially available tools for radio frequency identification, which we term the e-RFIDuino. Designed to be robut, easy to build and install, it detects and records the mobility of objects tagged with active transponders emitting in the ultra-high frequency domain (433.5 MHz). It functions without connection to the power supply network and is adapted to harsh outdoor environments. Once installed in the field and its on-site sensing field is determined, the data collected (timestamp of detection, transponder identification number, and received signal strength indication) allow estimation of the virtual velocity of tracer passage and investigation of displacement patterns at the scale of the area of detection. Experimental tests showed the device to have very high effectiveness when used to monitor the passage of sediment tracers in a torrential river system during various flood events over several months. The total cost to construct this open source device is below 850 Euros, and it is easily customizable. In the future, it could be equipped with a system for data transmission over the mobile telephone network to reduce the field effort and time required to obtain data, and to provide real-time triggering of field acquisitions at the most appropriate times.Entities:
Keywords: Active UHF transponders; Bedload; Environmental RFID monitoring station; Floating wood; Object monitoring; Power environmental station
Year: 2021 PMID: 35607659 PMCID: PMC9123422 DOI: 10.1016/j.ohx.2021.e00210
Source DB: PubMed Journal: HardwareX ISSN: 2468-0672
Fig. 1The e-RFIDuino station and its five connected modules: RFID antenna (1), RFID SCIEL reader (2), Arduino datalogger, LiPo Rider, and batteries (3), housing box (4), and small solar panel (5).
Fig. 2Wiring diagram. (A) Global hardware architecture of the e-RFIDuino station. (B) Focus on the wiring diagram for the Mini Pro, RTC, and MicroSD reader (the wire colors do not correspond to Fig. 5).
Fig. 5Mini Pro card (A) and MicroSD reader, RTC (B).
Fig. 3Architecture of the device software with the different functions used.
Fig. 4Example output text file.
Fig. 6Program upload from PC to Mini Pro using the USB-Series FTDI GT1125 converter. Disconnected (A) and connected (B).
Fig. 7Two-step procedure to set the RTC time.
Fig. 8Checking that the system is working properly.
Fig. 9The e-RFIDuino Station installed on the Séveraisse River. (A) the river channel with (B) a straight, narrow, and confined reach was selected. (C) The system was located on the right bank with (D) the Slender III antenna and the solar panel facing south. (E) and (F) show the antenna’s sensing field.
Fig. 10Operator during the on-site determination of the antenna sensing field (A) and the received signal strength indication spatially determined from 30 sampling points (B).
Fig. 11Example of the monitoring of tracked particle passages during the 2020 field campaign. (A) Date and mean velocity of tracer’s passages with regard to water discharge chronic. (B) Focus on a single tracer detailed signal at its passage. Notes: in (A) Black dots indicate timestamp of entry and exit within the antenna sensing field and have a size function of the trace virtual velocity and are scattered at the mean water discharge observed during their passage. Black horizontal lines indicate a long stay within antenna sensing field. Purple scare highlight in hydrological chronic the passage of the tracer detailed in (B). In (A) and (B) blue lines indicates water discharge values reported on left-side ordinate axis. In (B) red dots indicate the Received signal strength indication (RSSI) in dBm reported on the right-side ordinate axis of a single beacon signal detection. The red line represents the rolling average in dBm reported on the right-side ordinate axis and based on 100 observations. (For interpretation of the references to colour in this figure legend, the reader is referred to the web version of this article.)
| Hardware name | |
| Subject area | Engineering and Material Science Environmental, Planetary, and Agricultural Sciences Educational Tools and Open Source Alternatives to Existing Infrastructure General |
| Hardware type | Field measurements and sensors Mechanical engineering and materials science |
| Open Source License | Creative Commons Attribution 4.0 International license |
| Cost of Hardware | |
| Source File Repository | Reserved DOI: |
| Design file name | File type | Open source license | Location of the file |
|---|---|---|---|
| Design file 1 | INO file | Creative Commons Attribution 4.0 International license | Reserved DOI: |
| Designator | Component | Number/quantity | Cost per unit -currency | Total cost -currency | Source of materials | Material type |
|---|---|---|---|---|---|---|
| RFID antenna | RFID Antenna 433 Mhz SLENDER III | 1 | €198 | €198 | Other | |
| RFID reader | SCIEL READER RU | 1 | €399 | Other | ||
| Coaxial cable (Antenna to reader) | soft BNC / N IP67 | 5 | €58 | €58 | Other | |
| RS232 Transceiver Ics | SP232ACP; MaxLinear | 1 | €4.69 | €4.69 | ||
| Battery | Accu Li-Ion 3.8 V 5100 mAh; SEEED Technology Corp. | 2 | €29.95 | €59.90 | ||
| Solar panel | SOL3W; 3Wc; 5.5 V/540 mA − 160 × 138 mm | 1 | €19.00 | €19.00 | ||
| Solar panel regulator | LiPo Rider Pro; SEEED Studio; ref: 106,990,008 | 1 | €15.60 | €15.60 | ||
| Micro Controller card | Mini Pro Module, 3.3 V / 8 MHz | 1 | €10.48 | €10.48 | ||
| Real Time Clock | RTC DS3231 AT24C32 IIC Clock Timer for Arduino | 1 | €3.99 | €3.99 | ||
| Button cell battery for RTC | Lithium battery CR1220 | 1 | €2.50 | €2.50 | ||
| Micro SD Card reader | Sparkfun electronic, DEV13743 | 1 | €7.90 | €7.90 | ||
| Micro SD Card | Carte micro SD 8 GB | 1 | €12.95 | €12.95 | ||
| Electronic board | Board Roth Elektronik | 1 | €8.28 | €8.28 | ||
| Computer to Mini Pro card connection (to upload the program) | USB-Series FTDI GT1125 converter and USB cable, Iduino | 1 | €9.90 | €9.90 | ||
| Junction box | Polypropylene; 105 × 80 × 150 mm; IP55 | 1 | €21.14 | €21.14 |