基于紫外光通信的泊车自动引导系统
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科拓城市停车诱导系统方案目录目录............................................................................................................................................ - 2 -一、项目概述................................................................................................................................. - 3 -1.1 项目背景.......................................................................................................................... - 3 -1.2项目简介及功能需求........................................................................... 错误!未定义书签。
1.3建设原则.......................................................................................................................... - 4 -1.4建设目标.......................................................................................................................... - 5 -二、厦门科拓通讯技术有限公司简介......................................................................................... - 5 -三、科拓城市停车诱导系统简介................................................................................................. - 6 -四、系统架构................................................................................................................................. - 7 -五、系统组成................................................................................................................................. - 8 -5.1数据采集系统.................................................................................................................. - 8 -5.1.1系统简介............................................................................................................... - 8 -5.1.2车场车位引导系统............................................................................................... - 9 -5.1.3运行环境............................................................................................................. - 11 -5.1.4软件介绍............................................................................................................. - 12 -5.2数据传输系统................................................................................................................ - 14 -5.3 中央管理系统................................................................................................................ - 14 -5.4信息发布系统................................................................................................................ - 15 -六、系统硬件............................................................................................................................... - 20 -6.1 超声波车位探测器........................................................................................................ - 20 -6.2 节点控制器.................................................................................................................... - 20 -6.3 中央控制器.................................................................................................................... - 21 -6.4 入口车位显示屏............................................................................................................ - 21 -6.5 车位引导显示屏............................................................................................................ - 21 -6.6分车道控制器....................................................................................... 错误!未定义书签。
文章编号:1007-757X(2021)06-0202-03紫外线自动检测及消毒系统设计王颖(吉林大学第一医院二部应中心,吉林长春130031)摘要:由于消毒环境的变化,常规消毒制度很难满足现场紫外线消毒要求,要么消毒不足,要么过度消毒。
针对上述问题!结合微控制器设计了紫外线自动检测消毒系统。
系统可实现现场紫外线自动检测,并根据检测结果及时调整辐照度和消毒时间,以满足现场消毒要求。
此外,融入了递减算法抗干扰措施,提高了系统自动检测精度。
该设计为紫外线消毒设备及系统的改造提供了参考,具有一定的应用价值。
关键词:紫外线消毒;辐照度;微控制器;递减算法中图分类号:R187+.4文献标志码:ADesign of Ultraviolet Automatic Detection and Disinfection SystemWANG Ying (DisinfectionandSupplyCenteroftheSecondDepartment,theFirstHospitalofJilin University,Changchun130031,China) Abstract:Due to the change of disinfection environment,the conventional disinfection system cannot meet the requirements of ultraviolet disinfection,either insufficient disinfection or excessive disinfection.Aiming at these problems,combined with mi-crocontraller,an automatic ultraviolet detection and disinfection system is designed.The system can realize the automatic detection of ultraviolet rays on site,and adjust the irradiance and disinfection time according to the detection results,so as to meet the requirements of disinfection on site.In addition,the system integrates the anti-interference measures of the decreasing algorithm to improve the automatic detection accuracy.The design provides a reference for the transformation of UV disinfection equipment and system,and has a certain application value.Key words:UV disinfection;irradiance;microcontroller;decreasing algorithm0引言紫外线常用在治疗室、实验室院科室等环境,由于环境的变化使得传统的定时制能达到,丿合适的量才能达到的宇效在医用环境下,紫外线量时间和紫外线辐照度的乘积⑵。