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一种培养人工晶体的温度控制系统设计
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作者 倪榕生 《山东工业技术》 2018年第1期127-128,206,共3页
本文介绍了一种适用于人工晶体培养的集成温度控制系统,实现了规模化生产。系统采用二级控制,第一级由STM32微处理器为核心的智能型模糊PID控制器,对温度变化快速响应和控制。第二级以工控机为核心,对多套加热炉温度系统的数据采集与监... 本文介绍了一种适用于人工晶体培养的集成温度控制系统,实现了规模化生产。系统采用二级控制,第一级由STM32微处理器为核心的智能型模糊PID控制器,对温度变化快速响应和控制。第二级以工控机为核心,对多套加热炉温度系统的数据采集与监控。该系统能适应3天至180天的不同品种晶体培养周期。实现了人工晶体培养的自动控制和生产的计算机控制。 展开更多
关键词 人工晶体 加热炉 集成温度控制 模糊PID控制
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Opto-mechanical-thermal integration analysis of Doppler asymmetric spatial heterodyne interferometer
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作者 WANG Jin-jiang JIANG Lun +3 位作者 TONG Shou-feng PEI Hui-yi CUI Yong GUO Ming-hang 《中国光学(中英文)》 EI CAS CSCD 北大核心 2024年第6期1489-1511,共23页
In order to improve the detection accuracy of Doppler asymmetric spatial heterodyne(DASH)interferometer in harsh temperatures,an opto-mechanical-thermal integration analysis is carried out.Firstly,the correlation betw... In order to improve the detection accuracy of Doppler asymmetric spatial heterodyne(DASH)interferometer in harsh temperatures,an opto-mechanical-thermal integration analysis is carried out.Firstly,the correlation between the interference phase and temperature is established according to the working principle and the phase algorithm of the interferometer.Secondly,the optical mechanical thermal analysis model and thermal deformation data acquisition model are designed.The deformation data of the interference module and the imaging optical system at different temperatures are given by temperature load simulation analysis,and the phase error caused by thermal deformation is obtained by fitting.Finally,based on the wind speed error caused by thermal deformation of each component,a reasonable temperature control scheme is proposed.The results show that the interference module occupies the main cause,the temperature must be controlled within(20±0.05)℃,and the temperature control should be carried out for the temperature sensitive parts,and the wind speed error caused by the part is 3.8 m/s.The thermal drift between the magnification of the imaging optical system and the thermal drift of the relative position between the imaging optical system and the detector should occupy the secondary cause,which should be controlled within(20±2)℃,and the wind speed error caused by the part is 3.05 m/s.In summary,the wind measurement error caused by interference module,imaging optical system,and the relative position between the imaging optical system and the detector can be controlled within 6.85 m/s.The analysis and temperature control schemes presented in this paper can provide theoretical basis for DASH interferometer engineering applications. 展开更多
关键词 Doppler asymmetric spatial heterodyne interferometer interference module imaging optical system opto-mechanical thermal integration analysis phase error temperature control
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