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基于串联谐振的智能吊篮安全绳锁扣检测系统设计

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为了提高高处作业吊篮工作人员的施工安全性,研究了一种智能吊篮的安全绳锁扣检测系统,该系统能够精确测量锁扣是否处于闭合的状态;系统采用了谐振电路和信号处理链的组合,实现了对锁扣状态的高度监测和识别;主控芯片产生的方波信号经过谐振电路谐振后,最终输出目标正弦波;经过滤波整流和电压放大电路对信号处理后,信号被输送给比较器电路进行进一步分析,比较器电路用于与预设的阈值进行比较,以判断锁扣状态;系统成功判断锁扣闭合状态并显示给施工人员,准确实验结果对于提升高空作业领域的安全性和可控性具有深远的意义,通过集成了多个关键模块的系统设计,降低了锁扣未闭合造成的事故风险,同时及时警示操作人员,使工作场所更加安全可靠,强调了电子信息技术在工程安全中的关键作用。
Design of an Intelligent Hoist Safety Buckle Detection System Based on Series Resonance
In order to enhance the construction safety of hoist operators at heights,an intelligent safety rope lock detection system is studied.This system can accurately measure whether the lock is in a closed state.The system utilizes the combination of the reso-nant circuit and signal processing chain to achieve the precise monitoring and identification of the lock's status.The square wave signal generated by the main control chip is resonated through the resonant circuit,ultimately producing the desired sinusoidal wave output.After the signal is processed through the filtering,rectification,and voltage amplification circuits,the signal is transmitted to a com-parative circuit for further analysis.The comparative circuit is used to compare the signal with a preset threshold in order to determine the lock's status.The system successfully detects the closed state of the lock and displays it to the construction personnel.It is of great signif-icance for the accurate experimental results to improve the safety and control ability of high-altitude operations.By integrating multiple key modules in the system,it reduces the risk of accidents caused by unlocked locks,provides timely warnings to operators,makes the workplace more safer and reliable,and emphasizes the key role of electronic information technology in engineering safety.

series resonancesignal modulationcomparatorsafety buckleintelligent hoistrectification and filtering

罗东岳、李艳萍、朱家君、雒志恒

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山东建筑大学信息与电气工程学院,济南 250101

串联谐振 信号调制 比较器 安全绳锁扣 智能吊篮 整流滤波

山东省科技型中小企业创新能力提升工程项目

2022TSGC1356

2024

计算机测量与控制
中国计算机自动测量与控制技术协会

计算机测量与控制

CSTPCD
影响因子:0.546
ISSN:1671-4598
年,卷(期):2024.32(10)