期刊文献+

灯联网技术在智能照明系统中的应用与实现 被引量:4

Application and implementation of lamp networking technology in intelligent lighting system
下载PDF
导出
摘要 考虑到传统照明系统在功能和性能上无法满足用户需求,提出了灯联网技术在智能照明系统中的应用与实现。利用灯联网技术设计了灯联网型测控器,结合CPU控制电路设计,完成系统的硬件设计,通过设计色彩空间及颜色调节算法和智能照明PLC转发程序,完成了系统的软件设计,实现了灯联网技术在智能照明系统中的应用。将单元测试和联调测试结合起来,测试了智能照明系统的功能和性能,测试结果表明,基于灯联网技术的智能照明系统不仅在灯联网型测控器功能上可以满足用户的需求,还可以通过降低量测数据丢包率、减少响应命令延时,提高系统的性能,从而满足用户对系统性能的需求。 Considering that the traditional lighting system can not meet the needs of users in function and performance,the application and implementation of lamp networking technology in intelligent lighting system are proposed.Using the lamp networking technology,the lamp Networking Measurement and control device is designed.Combined with the CPU control circuit design,the hardware design of the system is completed.Through the design of color space,color adjustment algorithm and intelligent lighting PLC forwarding program,the software design of the system is completed,and the application of lamp networking technology in intelligent lighting system is realized.The function and performance of the intelligent lighting system are tested by combining unit test and joint commissioning test.The test results show that the intelligent lighting system based on lamp networking technology can not only meet the needs of users in the function of lamp Networking Measurement and control device,but also improve the performance of the system by reducing the packet loss rate of measurement data and reducing the response command delay,so as to meet the needs of users for system performance.
作者 徐巍峰 翁利国 Xu Weifeng;Weng Liguo(State Grid Zhejiang Hangzhou Xiaoshan District Power Supply Company,Hangzhou 331202,China;Zhejiang Zhongxin Power Engineering Construction Co.,Ltd.,Hangzhou 331202,China)
出处 《能源与环保》 2022年第10期211-216,共6页 CHINA ENERGY AND ENVIRONMENTAL PROTECTION
基金 国网浙江省电力有限公司科技项目(5211NB1900VQ)。
关键词 灯联网技术 照明系统 测控器 CPU控制 色彩空间 颜色调节 lamp networking technology lighting measurement and control device CPU control color space color adjustment
  • 相关文献

参考文献20

二级参考文献152

共引文献93

同被引文献22

引证文献4

二级引证文献7

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部