Low-Cost Sensor Deployment on a Public Minibus in Fukushima Prefecture

Sensors (Basel). 2024 Feb 21;24(5):1375. doi: 10.3390/s24051375.

Abstract

This study analyzed radiation dose data to observe the annual decline in ambient radiation doses and assess the factors contributing to fluctuations in reconstructed areas of the Fukushima prefecture. Utilizing a novel mobile monitoring system installed on a community minibus, the study employed a cost-effective sensor, namely, Pocket Geiger which was integrated with a microcontroller and telecommunication system for data transfer, access, visualization, and accumulation. The study area included the region between Okuma and Tomioka towns. The ambient dose rate recorded along the minibus route was depicted on a map, averaged within a 1 × 1 km mesh created with the Quantum Geographic Information System. To ensure accuracy, the shielding factor of the minibus material is determined to adjust the dose readings. A significant decrease (p < 0.001) in the radiation dose ranges from 2022 to 2023 was observed. The land use classification by the Advanced Land Observation Satellite revealed an ecological half-life ranging from 2.41 years to 1 year, suggesting a rapid radiation decay across all land types. This underscores the close connection between radiation attenuation and environmental factors, as well as decontamination efforts across diverse land categories.

Keywords: IoT; POKEGA; ambient dose; half-life; public bus.

MeSH terms

  • Electrocardiography
  • Fukushima Nuclear Accident*
  • Geographic Information Systems
  • Japan
  • Motor Vehicles
  • Radiation Dosage
  • Radiation Monitoring*

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