• Spectroscopy and Spectral Analysis
  • Vol. 40, Issue 10, 3130 (2020)
Fu-cai ZHANG1、1、*, Wei TANG1、1, and Xiao-gang SUN1、1
Author Affiliations
  • 1[in Chinese]
  • 11. School of Electrical and Control Engineering, Shaanxi University of Science and Technology, Xi’an 710021, China
  • show less
    DOI: 10.3964/j.issn.1000-0593(2020)10-3130-06 Cite this Article
    Fu-cai ZHANG, Wei TANG, Xiao-gang SUN. Multispectral True Temperature Inversion Based on Multi-Objective Minimum Optimization Principle of Reference Temperature[J]. Spectroscopy and Spectral Analysis, 2020, 40(10): 3130 Copy Citation Text show less
    Experimental verification schematic diagram
    Fig. 1. Experimental verification schematic diagram
    Variation of spectral emissivity with the wavelength(a): JB9 attenuator; (b): QB18 attenuator; (c): LB6 attenuator
    Fig. 2. Variation of spectral emissivity with the wavelength
    (a): JB9 attenuator; (b): QB18 attenuator; (c): LB6 attenuator
    1通道波长
    及电压
    2通道波长
    及电压
    3通道波长
    及电压
    4通道波长
    及电压
    5通道波长
    及电压
    6通道波长
    及电压
    7通道波长
    及电压
    8通道波长
    及电压
    有效波长/μm0.5870.6020.6200.6400.6600.6830.7100.743
    输出电压/V0.020 40.027 10.031 00.037 90.047 80.049 30.053 60.059 3
    Table 1. Voltage of each measurement channel at reference temperature
    测量
    编号
    1通道电压
    /V
    2通道电压3通道电压
    /V
    4通道电压
    /V
    5通道电压
    /V
    6通道电压
    /V
    7通道电压
    /V
    8通道电压
    /V
    10.026 90.035 60.040 50.049 50.062 30.064 10.069 80.077 5
    20.040 50.053 00.059 60.071 90.089 50.091 10.097 80.107 0
    30.046 90.061 20.068 50.082 30.102 00.103 30.110 40.120 2
    40.056 50.073 40.081 80.097 70.120 50.121 30.128 90.139 4
    50.026 60.034 40.038 20.045 30.055 40.055 10.057 60.060 9
    60.040 00.051 30.056 10.065 80.079 60.078 20.080 70.084 1
    70.046 30.059 10.064 50.075 30.090 70.088 70.091 10.094 5
    80.055 90.071 00.077 00.089 40.107 10.104 30.106 40.109 5
    90.034 10.045 60.053 50.059 60.064 50.055 70.044 30.031 8
    100.051 20.067 80.078 70.086 70.092 70.079 10.062 10.043 9
    110.059 30.078 30.090 40.099 10.105 60.089 70.070 10.049 3
    120.071 60.093 90.107 90.117 70.124 70.105 40.081 80.057 2
    Table 2. Voltage of each measuring channel in actual measurement
    测量
    编号
    黑体炉理论
    真温/K
    SMM法反演
    结果/K
    SMM法反演
    误差/%
    SMM法反演
    时间/s
    IMO法反演
    结果/K
    IMO法反演
    时间/s
    IMO法反演
    误差/%
    11 260.51 255.1-0.4352.653 71 253.12.924 9-0.59
    21 287.51 280.8-0.5255.543 61 279.82.923 0-0.60
    31 297.51 291.4-0.4752.684 81 289.82.598 3-0.59
    41 310.51 315.00.3454.129 41 302.72.962 8-0.60
    51 260.51 258.9-0.1357.763 21 248.02.543 6-0.99
    61 287.51 284.3-0.2555.698 41 270.52.795 9-1.32
    71 297.51 299.30.1451.574 31 277.32.436 6-1.56
    81 310.51 301.1-0.7253.656 71 305.72.754 3-0.37
    91 260.51 254.3-0.4960.753 21 261.52.632 40.08
    101 287.51 280.8-0.5256.352 11 291.42.834 60.30
    111 297.51 302.30.3756.978 51 298.42.896 40.07
    121 310.51 306.8-0.2857.344 51 311.22.865 20.05
    Table 3. Inversion results of true temperature
    测量编号1通道发射率2通道发射率3通道发射率4通道发射率5通道发射率6通道发射率7通道发射率8通道发射率
    10.708 10.716 40.725 20.738 40.749 70.762 00.778 80.799 7
    20.709 10.716 60.725 30.737 90.749 40.762 70.778 90.800 0
    30.707 90.716 10.724 50.737 20.748 50.761 40.777 80.799 3
    40.706 20.714 60.723 60.736 10.747 70.760 30.777 00.798 6
    50.751 90.742 10.731 70.721 40.710 30.696 30.681 70.664 8
    60.805 00.794 60.779 00.767 30.754 40.738 00.721 20.701 9
    70.841 50.828 90.813 30.799 80.785 20.766 90.748 40.727 7
    80.669 30.662 80.653 90.647 40.639 60.629 90.618 90.606 3
    90.788 00.808 20.846 80.788 90.691 30.592 00.443 80.296 0
    100.754 90.775 40.814 00.760 00.666 20.571 40.429 10.286 6
    110.789 00.810 10.848 40.790 70.692 70.593 20.445 00.296 7
    120.791 70.811 20.849 90.792 50.693 90.594 60.445 60.297 5
    Table 4. Inversion results of spectral emissivity
    Fu-cai ZHANG, Wei TANG, Xiao-gang SUN. Multispectral True Temperature Inversion Based on Multi-Objective Minimum Optimization Principle of Reference Temperature[J]. Spectroscopy and Spectral Analysis, 2020, 40(10): 3130
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