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基于FPGA的X光机焦点测量仪系统设计
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作者 敖子逸 杨建 +3 位作者 万清 周伟 袁婷萱 范浩 《中国测试》 CAS 北大核心 2024年第8期137-143,共7页
X光机的焦点尺寸是影响X射线成像质量的关键因素之一,针对X光机焦点尺寸测量方法繁琐、测量效率低等问题,文章提出一种以FPGA为核心控制芯片,狭缝法为测量原理的X光机焦点测量仪系统设计方案,通过线阵CCD传感器采集狭缝成像后的焦点信息... X光机的焦点尺寸是影响X射线成像质量的关键因素之一,针对X光机焦点尺寸测量方法繁琐、测量效率低等问题,文章提出一种以FPGA为核心控制芯片,狭缝法为测量原理的X光机焦点测量仪系统设计方案,通过线阵CCD传感器采集狭缝成像后的焦点信息,随后进行模数转换,并采用USB2.0传输方式将数据传输至上位机进行处理和计算。文章重点讨论线阵CCD、A/D转换和USB传输的驱动与时序设计,以及焦点尺寸的计算方法,该系统具有高精度、实时性低延迟的特点。实验结果表明,在对X光机大、小焦点尺寸各进行10次测量后,测量重复性分别为0.2808%和0.4779%,示值误差均在±0.15 mm范围内,这证明了该系统能够实现对X光机焦点尺寸的精准测量。 展开更多
关键词 X光机焦点 狭缝法 焦点测量 FPGA 线阵CCD
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MZI/FPI Fiber Optic Dual-parameter Sensor Based on a Double Cone and Air Cavity Structure(Invited)
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作者 yuan tingxuan ZHAO Lilong +5 位作者 REN Jianxin MAO Yaya ULLAH Rahat WU Xiangyu MAO Beibei XIA Wenchao 《光子学报》 EI CAS CSCD 北大核心 2024年第10期64-72,共9页
This paper proposes a Mach Zehnder/Fabry Perot Interferometer(MZI/FPI)fiber sensor based on Single-mode Fiber(SMF)and Hollow-core Fiber(HCF),which has high sensitivity to temperature and lateral loads.The proposed dev... This paper proposes a Mach Zehnder/Fabry Perot Interferometer(MZI/FPI)fiber sensor based on Single-mode Fiber(SMF)and Hollow-core Fiber(HCF),which has high sensitivity to temperature and lateral loads.The proposed device consists of two single-mode fiber cones formed by manually controlling the fusion splicer and an air cavity formed by fusing a section of hollow-core fiber.The structure of the sensor is a double cone cascaded air cavity.At the beginning of the design,we compared the basic transmission spectra of single cone structure and double cone structure experimentally,and therefore chose to use double cone structure and air cavity cascade.Light undergoes its first reflection at the first interface between the single-mode fiber and the air cavity structure,and its second reflection at the second interface between the air cavity structure and the single-mode fiber.The two reflected light waves produced by the two reflections form FP interference,which can be used to measure lateral loads.The transmitted light is excited through the first cone,and a portion of the core mode light is excited to the cladding,while another portion of the core mode light continues to propagate in the core.The light couples at the second cone,and the cladding mode light couples back into the core,forming MZ interference with the core mode light,which can be used to measure temperature.The use of hollow-core fiber to form an air cavity has little effect on transmitted light,while avoiding the problem of crosstalk in dual parameter measurements.By designing temperature and lateral load experiments,this article verifies the sensitivity characteristics of this sensor to temperature and lateral loads.A significant redshift phenomenon was observed in the temperature experiment.A significant redshift phenomenon also occurred in the lateral load experiment.Through wavelength demodulation,the experimental results show that the wavelength sensitivity of the sensor to temperature is 56.29 pm/℃in the range of 30℃to 80℃.The wavelength sensitivity of the sensor to lateral loads is 1.123 nm/N in the range of 0~5 N.In addition,we have prepared multiple sets of fiber optic sensors with this structure and conducted repeated experiments to verify that the sensing performance of this structure of fiber optic sensors for temperature and lateral load is relatively stable.Also,the different waist diameters of cones will have a certain impact on the transmission spectrum of MZ,while the length of the air cavity will also have a certain impact on the reflection spectrum of FP.This article lists some fiber optic sensors for dual parameter measurement of temperature and lateral load.Compared with the listed sensors,the fiber optic sensor proposed in this article has better sensitivity to temperature and lateral load.And the fiber optic sensor proposed in this article has a simple manufacturing process,low production cost,and good performance,which has certain prospects in scientific research and industrial production. 展开更多
关键词 Temperature Lateral load Fiber sensor Mach-Zehnder interferometer Fabry-Pérot interferometer
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