Laser Technology, Volume. 47, Issue 4, 527(2023)
Study on the applicability of gongpear size difference to soluble solid model
[1] [1] HUANG Y P, LIU Y, YANG Y T, et al. Discrimination of tomato color grade by spatial resolution spectroscopy and visible/near infrared spectroscopy[J]. Spectroscopy and Spectral Analysis, 2019, 39(11): 3585-3591(in Chinese).
[3] [3] XIA Y, HUANG W, FAN S, et al. Effect of spectral measurement orientation on online prediction of soluble solids content of apple using Vis/NIR diffuse reflectance[J]. Infrared Physics & Technology, 2019, 97: 467-477.
[4] [4] GUO Z, HUANG W, PENG Y, et al. Color compensation and comparison of shortwave near infrared and long wave near infrared spectroscopy for determination of soluble solids content of ‘Fuji’apple[J]. Postharvest Biology and Technology, 2016, 115: 81-90.
[5] [5] YAO Y, CHEN H, XIE L, et al. Assessing the temperature influence on the soluble solids content of watermelon juice as measured by visible and near-infrared spectroscopy andchemometrics[J]. Journal of Food Engineering, 2013, 119(1): 22-27.
[6] [6] XIA Y, FAN S, LI J, et al. Optimization and comparison of models for prediction of soluble solids content in apple by online Vis/NIR transmission coupled with diameter correction method[J].Chemometrics and Intelligent Laboratory Systems, 2020, 201: 104017.
[7] [7] CEN H, LU R, MENDOZA F, et al. Relationship of the optical absorption and scattering properties with mechanical and structural properties of apple tissue[J]. Postharvest Biology and Technology, 2013, 85: 30-38.
[8] [8] van BEERS R, AERNOUTS B, WATT R, et al. Effect of maturation on the bulk optical properties of apple skin and cortex in the 500-1850 nm wavelength range[J]. Journal of Food Engineering, 2017, 214: 79-89.
[9] [9] ZHANG X X, LI Sh K, LI P, et al. Effects of near-infrared diffuse light on fruit penetration [J]. Chinese Journal of Food Science,2022,22(1):298-305(in Chinese).
[10] [10] HUANG J J, LI X M, TENG H Q. Evaluation model of loess collapsibility based on partial least square method[J]. Journal of Disaster Science,2021, 36(2):60-64(in Chinese).
[11] [11] LIU Y D, WANG J Zh, JIANG X G, et al. Detection of soluble solids in apple by near infrared spectroscopy with multi-mode adjustable optical mechanism[J]. Spectroscopy and Spectral Analysis, 2021, 41(7): 2064-2070(in Chinese).
[13] [13] ZHOU L J, WU H, LI J T, et al. Determination of fatty acids in broiler breast meat by near-infrared reflectance spectroscopy[J]. Meat Science, 2012, 90(3): 658-664.
[14] [14] LIU Y D, ZHU D N, WU M M, et al. Online detection of soluble solids in yulu pear by near-infrared diffuse transmission spectroscopy[J]. Food and Machinery, 2016, 32(10): 115-119(in Chinese).
[15] [15] LI L Sh, LIU Y D, HU J, et al. Application of near infrared nondestructive testing technology in fruit maturity discrimination[J]. Journal of East China Jiaotong University, 2021, 38(6):95-105(in Chinese).
[16] [16] XIAO Sh J, WANG Q H, LI Ch F, et al. Nondestructive testing classification of milk quality by Fourier transform infrared spectroscopy [J]. Spectroscopy and Spectral Analysis, 2022, 42(4):1243-1249(in Chinese).
[18] [18] ZHANG J L, XIN M, FAN L L, et al. Monitoring system based on near infrared spectroscopy after skin flap transplantation [J]. Laser Technology, 2020, 44(1): 91-95(in Chinese).
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LIU Yande, LIAO Jun, SUN Zhaoxiang, LI Bin, ZHU Mingwang, YAO Jinliang, WANG Qiu. Study on the applicability of gongpear size difference to soluble solid model[J]. Laser Technology, 2023, 47(4): 527
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Received: Jun. 21, 2022
Accepted: --
Published Online: Dec. 11, 2023
The Author Email: LIU Yande (jxliuyd@163.com)