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室内氡浓度自动检测控制与管理系统的设计与实现

Design and Implementation of Automatic Detection Control and Management System for Indoor Radon Concentration

  • 摘要: 室内氡浓度的检测是建筑工程验收时必不可少的重要检测环节,目前普遍采用活性炭盒法进行检测。为解决该方法检测过程人力投入大、效率低等问题,设计了一套室内氡浓度自动检测控制与管理系统,系统集成了机械臂、扫码装置、高精度电子秤及自动分析模块,在不改变传统活性炭盒法检测流程的前提下,实现了“炭盒投放—扫码称重—检测分析—数据存储”的全流程自动化控制。在800个样本的工程测试中,自动检测所得氡浓度值与人工检测结果之间的误差不超过±0.37%,炭盒称重异常率为1.23%,二维码识别异常率为1.11%,单位样本平均能耗约为39 Wh,整体检测效率相较人工流程提高了60%以上。该系统具备良好的运行稳定性和扩展能力,可显著提升氡浓度检测工作的信息化和智能化水平,具有广阔的工程推广前景。

     

    Abstract: Monitoring indoor radon concentration is an essential part of building project acceptance inspections. Currently, the activated carbon box method is widely used for radon detection. To address the high labor intensity and low efficiency associated with this method, an automated detection, control, and management system for indoor radon concentration was developed. The system integrates a robotic arm, QR code scanning device, high-precision electronic scale, and automated analysis module. Without altering the traditional activated carbon box detection workflow, it enables full-process automation of carbon box loading, scanning and weighing, measurement, and data storage. Field tests conducted across multiple construction projects demonstrated that, under a task load of 800 samples, the radon concentration values obtained by the automated system deviated from manually measured results by no more than ±0.37%. The error rates for weighing and QR code identification were 1.23% and 1.11%, respectively. The average energy consumption per sample was approximately 39 Wh, and the overall detection efficiency was improved by more than 60% compared to manual processes. The system exhibits strong operational stability and scalability, significantly enhancing the informatization and intelligence of radon detection, and holds considerable potential for engineering application and promotion.

     

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