Journal of Applied Optics, Volume. 44, Issue 2, 392(2023)

Research on temperature control and self-tuning for 30℃~420℃ blackbody

Tieli HU1,*... Honghong WANG1, Siwei LI1, Feng CAO1, Xinyi HU2, Zhe FAN1, Yuxin YANG1, Jian GUO1, Yue YOU1, Ke YANG1, Hui LI1 and Yang YU1 |Show fewer author(s)
Author Affiliations
  • 1The First Scale Optical Metrology Station of the Science, Technology and Industry for National Defense, Xi'an Institute of Applied Optics, Xi'an 710065, China
  • 2Technology Department, Xi'an Guiding Technology Co.,Ltd., Xi'an 710065, China
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    As the standard infrared light source, it is required that 30℃~420℃ blackbody can quickly heat up to the setting temperature, and keep the temperature stable. For the characteristics of large difference and large lag of heating and cooling power, the self-tuning method of impulse response based on the bang-bang control was used to obtain the parameters of blackbody temperature rise overshoot and maximum heating and cooling rate. Using the compound intelligent temperature control strategy, the temperature of 30℃~420℃ blackbody could rise speedily in the first stage. When approaching the setting temperature, the blackbody gradually reached and stabilized at the setting temperature. The experimental results show that 30℃~420℃ blackbody rises to the target temperature without overshoot, and the temperature stability is ±0.03 ℃/min, which reached the international level of similar products.

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    Tieli HU, Honghong WANG, Siwei LI, Feng CAO, Xinyi HU, Zhe FAN, Yuxin YANG, Jian GUO, Yue YOU, Ke YANG, Hui LI, Yang YU. Research on temperature control and self-tuning for 30℃~420℃ blackbody[J]. Journal of Applied Optics, 2023, 44(2): 392

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    Paper Information

    Category: Research Articles

    Received: May. 12, 2022

    Accepted: --

    Published Online: Apr. 14, 2023

    The Author Email:

    DOI:10.5768/JAO202344.0203005

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