Structured illumination-based transport-of-intensity phase imaging for quantitative diagnostics of high-speed flows

被引:1
|
作者
Medhi, Biswajit [1 ]
机构
[1] Indian Inst Sci, Dept Instrumentat & Appl Phys, Bangalore 560012, Karnataka, India
关键词
DENSITY-MEASUREMENTS; RETRIEVAL; SCHLIEREN; VISUALIZATION; SHADOW;
D O I
10.1364/AO.440213
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
A method for quantitative estimation of density in a high-speed flow field is presented, which uses structured illumination to interrogate the region of interest (ROI). Wavefront distortion suffered by the interrogating beam as it passes through the shock-induced flow field is investigated. Customized camera optics is used to measure the cross-sectional intensities of the exiting wavefront at two different planes, concurrently. A technique is proposed that uses the displacement of the structured light pattern to estimate the axial intensity derivative, partial derivative I/partial derivative z, which is the input to the transport-of-intensity equation (TIE) for phase estimation. The proposed method allows the use of images with larger defocused distances, partial derivative z, as it does not follow the conventional recipe of finite-difference (FD) approximation for intensity derivative estimation. This flexes two requirements of conventional TIE imaging: first, it brings flexibility in imaging optics, not restricted to small f-number objectives; second, use of a sensitive camera is optional, as partial derivative I/partial derivative z estimation does not use absolute intensities but information from the distorted pattern of structured light. The recovered phase from the TIE is used as an input to the phase tomography algorithm to obtain the refractive index followed by density distributions in the flow field quantitatively. The proposed phase estimation technique is verified through simulations first and then is implemented in experiments conducted in a hypersonic shock tunnel for flow Mach No. of 8.8. Estimated cross-sectional densities of the flow field around the aerodynamic test model are presented and compared with the numerically estimated values, which shows good agreement. (C) 2022 Optical Society of America
引用
收藏
页码:945 / 953
页数:9
相关论文
共 50 条
  • [41] Neural-field-assisted transport-of-intensity phase microscopy: partially coherent quantitative phase imaging under unknown defocus distance
    Jin, Yanbo
    Lu, Linpeng
    Hou, Shun Z.
    Zhou, Jie
    Fan, Yao
    Zuo, Chao
    PHOTONICS RESEARCH, 2024, 12 (07) : 1494 - 1501
  • [42] Neural-field-assisted transport-of-intensity phase microscopy: partially coherent quantitative phase imaging under unknown defocus distance
    YANBO JIN
    LINPENG LU
    SHUN ZHOU
    JIE ZHOU
    YAO FAN
    CHAO ZUO
    PhotonicsResearch, 2024, 12 (07) : 1494 - 1501
  • [43] High-speed quantitative 3D imaging by dual-illumination holographic microscopy
    Donnarumma, Dario
    Rawat, Nitin
    Brodoline, Alexey
    MICROSCOPY RESEARCH AND TECHNIQUE, 2018, 81 (12) : 1361 - 1365
  • [44] High-Accurate Quantitative Phase Imaging Based on the Transport of Intensity Equation and Wavelet Transform
    Fan, Chen
    Zhao, Hong
    Zhao, Zixin
    Li, Junxiang
    Du, Yijun
    Zhang, Gaopeng
    IEEE TRANSACTIONS ON INSTRUMENTATION AND MEASUREMENT, 2023, 72
  • [45] Speckle quantitative phase imaging camera based on the transport of intensity equation
    Lu, Linpeng
    Sun, Jiasong
    Zhang, Jialin
    Fan, Yao
    Chen, Qian
    Zuo, Chao
    SEVENTH INTERNATIONAL CONFERENCE ON OPTICAL AND PHOTONIC ENGINEERING (ICOPEN 2019), 2019, 11205
  • [46] High-speed structured planar laser illumination for contrast improvement of two-phase flow images
    Kristensson, E.
    Berrocal, E.
    Richter, M.
    Pettersson, S. -G.
    Alden, M.
    OPTICS LETTERS, 2008, 33 (23) : 2752 - 2754
  • [47] Optical Diagnostics for diesel Knock Based on High-speed Imaging and Optical Flow
    Zhao, M.
    Kaiser, S. A.
    28 DEUTSCHER FLAMMENTAG: VERBRENNUNG UND FEUERUNG, 2017, 2017, 2302 : 369 - 381
  • [48] Quantitative phase imaging camera with a weak diffuser based on the transport of intensity equation
    Lu, Linpeng
    Sun, Jiasong
    Zhang, Jialin
    Fan, Yao
    Chen, Qian
    Zuo, Chao
    COMPUTATIONAL IMAGING IV, 2019, 10990
  • [49] High-speed line-field confocal holographic microscope for quantitative phase imaging
    Liu, Changgeng
    Knitter, Sebastian
    Cong, Zhilong
    Sencan, Ikbal
    Cao, Hui
    Choma, Michael A.
    OPTICS EXPRESS, 2016, 24 (09): : 9251 - 9265
  • [50] High-speed line-scanning confocal holographic microscopy for quantitative phase imaging
    Liu, Changgeng
    Knitter, Sebastian
    Cong, Zhilong
    Sencan, Ikbal
    Cao, Hui
    Choma, Michael A.
    QUANTITATIVE PHASE IMAGING II, 2016, 9718