王洪金(湖南大學電氣與信息工程學院助理教授)

王洪金(湖南大學電氣與信息工程學院助理教授)

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王洪金,女,博士,湖南大學電氣與信息工程學院助理教授。

基本介紹

人物經歷,教育經歷,工作經歷,研究方向,學術成果,期刊文章,會議文章,

人物經歷

教育經歷

09/2010-12/2016 德克薩斯A&M大學德州農工大學)—大學城(Texas A&M University - College Station), 機械工程, 博士,(Ph.D)
09/2008-07/2010 湖南大學, 碩士
09/2004-07/2008 湖南大學,學士

工作經歷

03/2018-至今 助理教授,儀器科學與技術系,湖南大學,中國
02/2013-05/2015 講師, 工程技術與工業分配系, 德克薩斯A&M大學, 美國

研究方向

紅外熱成像無損檢測及相關人工智慧
熱成像中的逆問題
紅外熱成像在新能源設備中的套用
主要科研成果以及獨立英文寫作經歷

學術成果

期刊文章

1. Wang, Hongjin, Hsieh, Sheng-jen et al. “Non-Metallic Coating Thickness Prediction Using Artificial Neural Network and Support Vector machine with Time Resolved Thermography.” Infrared Physics and Technology 77 (2016):316-324.
2. Wang, Hongjin, Hsieh, Sheng-jen et al. "Using active thermography to inspect pin-hole defects in anti-reflective coating with k-mean clustering." NDT & E International 76 (2015): 66-72.
3. Wang, Hongjin, Sheng-Jen Hsieh, and Alex Stockton. "Evaluating the performance of artificial neural networks for estimating the nonmetallic coating thicknesses with time-resolved thermography." Optical Engineering 53.8 (2014): 083102-083102.
4. Wang, Hongjin, et al. "Restored pseudo heat flux (RPHF) algorithm for carbon fibre composite defect detection using thermography under uneven heating." Quantitative InfraRed Thermography Journal (2017): 1-15
5. Gong, Guangcai, Jinchen Tang, Dongyan Lv, and Hongjin Wang. "Research on frost formation in air source heat pump at cold-moist conditions in central-south China." Applied energy 102 (2013): 571-581.

會議文章

1. Wang, Hongjin, and Sheng-Jen Hsieh. "Comparison of step heating and modulated frequency thermography for detecting bubble defects in colored acrylic glass." SPIE Sensing Technology+ Applications. International Society for Optics and Photonics, 2015.
2. Wang, Hongjin, Sheng-Jen Hsieh, and Bhavana Singh. "Detection of pinhole defects in optical film using thermography and artificial neural network." SPIE Sensing Technology+ Applications. International Society for Optics and Photonics, 2015.
3. Wang, Hongjin, and Sheng-Jen Hsieh. "Estimating non-metallic coating thickness using artificial neural network modeled time-resolved thermography: capacity and constraints." SPIE Sensing Technology+ Applications. International Society for Optics and Photonics, 2014.

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