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[Design of Remote Multi-part Personal Radiation Dose System Based on Bluetooth Communication Module]
Guangguang Yan1, Ting Zhang1, Jinlin Gong1
1Department of Biomedical Engineering, Changzhi Medical College, Changzhi, 046000. ##Email#.
Summary
This study presents a portable, low-power personal radiation detection system using an ATmega32A microcontroller. The system accurately measures radiation, provides real-time data, and alerts users, demonstrating practical value.
Area of Science:
- Nuclear Instrumentation
- Environmental Monitoring
- Embedded Systems
Background:
- Personal radiation detection is crucial for safety in various environments.
- Existing systems may lack portability, real-time data transmission, or advanced alarming features.
Purpose of the Study:
- To design and validate a remote, multi-part personal radiation dose detection system.
- To enable real-time radiation monitoring, data transmission, and security alarming.
Main Methods:
- Utilized an ATmega32A microcontroller as the core processing unit.
- Integrated a Geiger-Muller tube for environmental radiation signal collection.
- Implemented Bluetooth for remote data transmission to host devices or mobile applications.
Main Results:
- The system demonstrated stable radiation measurement capabilities, comparable to a commercial radiometer (RG1100) with a maximum difference of 0.03 μSv/h.
- Successfully realized real-time radiation monitoring, remote data transmission, and security alarm functions.
Conclusions:
- The developed system offers excellent portability, low power consumption, and accurate radiation measurement.
- The system holds significant reference value and practical applicability for personal radiation monitoring.
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