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Indoor lighting environment space design simulation system based on optical imaging and intelligent manufacturing

  • Shuli Liang,
  • Xiyan Sun

摘要

With the rapid development of intelligent manufacturing technology, the design of indoor lighting environment has gradually received attention, especially in optimizing production efficiency and working environment. In order to achieve efficient and beautiful lighting design, improve indoor environment quality, and ensure the smooth progress of the manufacturing process. A simulation platform integrating optical image processing technology and intelligent manufacturing concept is developed. By collecting optical image data of an indoor environment, real-time monitoring and evaluation of light distribution, color temperature and brightness are carried out by image analysis technology. At the same time, the dynamic lighting demand model is generated by combining the running state of intelligent manufacturing equipment and the human activity trajectory. Finally, computer simulation technology is used to optimize the lighting design scheme for different scenes. The experimental results show that the developed simulation system can effectively improve the uniformity and light efficiency of indoor lighting and reduce energy consumption. At the same time, through the comparison of different lighting schemes, it is found that the system can significantly improve the work efficiency and comfort of workers, and achieve the expected design goals.