基于LoRa通信的低功耗γ辐射探测模块设计OA
Design of a Low-Power Gamma Radiation Detection Module Based on LoRa Communication
在核应急情况下,迅速评估核电厂厂区的辐射水平至关重要.为应对核事故发生后辐射场快速变化,固定监测网可能失效的问题,本研究研制了基于 LoRa的低功耗 γ辐射探测模块.系统采用了闪烁体和半导体双探头的探测器,通过硬件低功耗设计和软件低功耗设计,实现宽量程、低功耗长期连续监测.利用 LoRa模块自组网技术,支持多点快速布设和远距离无线传输.测试结果表明,模块在复杂环境下运行稳定,功耗低,数据可靠,满足核应急快速响应和大范围辐射监测的需求,具有良好的工程应用前景.
In the event of a nuclear emergency,it is crucial to quickly assess the radiation levels within the nuclear power plant site.To address the issue of the rapid changes in the radiation field after a nuclear accident and the potential failure of the fixed monitoring network,this study has developed a low-power gamma radiation detection module based on LoRa.The system employs a dual-probe detector with scintillation and semiconductor sensors.Through both hardware and software low-power designs,it achieves wide-range,low-power long-term continuous monitoring.Utilizing the self-organizing network technology of the LoRa module,it supports rapid multi-point deployment and long-distance wireless transmission.Test results indicate that the module operates stably in complex environments,with low power consumption and reliable data.It meets the needs for rapid response in nuclear emergencies and wide-area radiation monitoring,and has good prospects for engineering applications.
黄晓鹏;肖思敏;李兴隆;袁国军;李世垚;汪传高;骆志平
中国原子能科学研究院,北京 102413中国原子能科学研究院,北京 102413中国原子能科学研究院,北京 102413中国原子能科学研究院,北京 102413中国原子能科学研究院,北京 102413中国原子能科学研究院,北京 102413中国原子能科学研究院,北京 102413
能源科技
核应急监测γ辐射探测LoRa低功耗
nuclear emergency monitoringγ radiation detectionLoRalow power
《同位素》 2026 (4)
322-330,9
一体化闭式循环快堆核能系统项目
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