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激光照明的低空机遇:航空障碍灯

卢丽红 张乐乐 徐坚

发光学报2026,Vol.47Issue(6):1060-1069,10.
发光学报2026,Vol.47Issue(6):1060-1069,10.DOI:10.37188/CJL.20260022

激光照明的低空机遇:航空障碍灯

Laser-based Lighting for Low-altitude Applications:Aviation Obstruction Lights

卢丽红 1张乐乐 2徐坚3

作者信息

  • 1. 焦作大学土木建筑工程学院,河南焦作 454150
  • 2. 河南理工大学物理与电子信息学院,河南焦作 454000
  • 3. 河南理工大学物理与电子信息学院,河南焦作 454000||河南聚盏光电有限公司,河南焦作 454003
  • 折叠

摘要

Abstract

With the low-altitude economy established as a strategic emerging industry in China,its scale has expanded rapidly,driving iteration in core technologies.Aviation obstruction lights,as critical safety infrastructure in architecture and civil engineering,are installed atop tall structures to warn aircraft,prevent collisions,and ensure orderly low-altitude operations.These lights function as high-intensity projectors requiring precise optical distribution.Laser illumination tech-nology,characterized by high brightness,low divergence,and compact structure,offers superior beam control and inten-sity over traditional light sources.Furthermore,the niche nature of the aviation lighting market reduces price sensitivity,which helps mitigate the cost disadvantage of lasers and opens new opportunities for the industry.Against this backdrop,this article first reviews the technological evolution of obstruction lighting,then interprets key parameters in current Chi-nese civil aviation standards and summarizes their requirements for luminous materials and light sources.Subsequently,it details the physical principles underlying the significant advantages of laser lighting in this application.Finally,from an industry perspective,it outlines future trends and challenges,offering insights for researchers in the field.

关键词

低空经济/航空障碍灯/激光照明

Key words

low-altitude economy/aviation obstruction lights/laser lighting

分类

信息技术与安全科学

引用本文复制引用

卢丽红,张乐乐,徐坚..激光照明的低空机遇:航空障碍灯[J].发光学报,2026,47(6):1060-1069,10.

基金项目

河南理工大学双一流学科建设(GCCYJ202405)Supported by Henan Polytechnic University Double First-Class Discipline Construction Project(GCCYJ202405) (GCCYJ202405)

发光学报

1000-7032

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