Department of Electronics and Information Engineering

WAN Yong

Publisher:Kaifei HePubdate:2023-01-13Views:43

Personal Information


Dr. WAN Yong

Associate Professor in Information and Communication Engineering

Master/PhD supervisor


Department of Electronic and Information Engineering

College of Oceanography and Space Informatics

China University of Petroleum

Address: NO.66, Changjiang West Road, Huandao, Qingdao, 266580, China.

Tel.: +86-532-15053251676

Email:wanyong@upc.edu.cn, upcwanyong@163.com

https://www.researchgate.net/profile/Yong-Wan-10



Expertise Areas

  •Microwave remote sensing detection and intelligent information processing technology of marine dynamic environment

  •Remote sensing information acquisition and processing technology based on big data deep learning

  •Intelligent evaluation technology of ocean wave energy and wind energy resources

  •Oil and gas information acquisition and intelligent information processing technology

  •Double carbon information technology


Education

2011.08-2015.06 Doctor of Science in ocean information detection and processing, Ocean University of China

2001.09-2004.06 Master of Engineering in control theory and control engineering, China University of Petroleum (East China)

1997.09-2001.06 Bachelor of applied electronic technology, China University of Petroleum (East China)


Employment

2019.07-up to now Associate Professor, Department of Electronic Information Engineering, College of Oceanography and Space Informatics, China University of Petroleum (East China)

2018.12-2019.06 Associate Professor, Department of Measurement and Control, College of Information and Engineering, China University of Petroleum (East China)

2006.12-2018.11Lecturer, Department of Electronic Information Engineering, College of Information and Control Engineering, China University of Petroleum (East China)

2004.07-2006.11Teaching Assistant, Department of Electronic Information Engineering, College of Information and Control Engineering, China University of Petroleum (East China)


Courses Offered

The Principle of Microcomputer,

Marine Information Processing Technology,

Data Acquisition System,

Comprehensive Experiment of Computer Measurement and Control


Funding and Projects

Research on Marine Environment Information Extraction Technology Based on Ocean Satellite Network, Subproject of National Key R & D plan, 2017YFC1405602, 2018/01-2020/12, Preside over


Comprehensive evaluation method of development potential of wave energy resources and its application in the waters around Shandong Peninsula, Shandong Natural Science Foundation Project, ZR2016DL09, 2016/12-2018/11, Preside over


Multi mode integrated microwave remote sensing technology and its application in wind and waves, Key fund of National Natural Science Foundation of China, 61931025, 2020/1-2024/12, Participation (fourth place)

Representative Publications

[1] Wan Y, Guo S, Li L G, Qu X J, Dai Y S. Data Quality Evaluation of Sentinel-1 and GF-3 SAR for Wind Field Inversion. Remote Sensing, 2021, 13, 3723. (SCI District 2 top)

[2] Ye J, Wan Y, Dai Y S. Quality evaluation and calibration of the SWIM significant wave

height product with buoy data. Acta Oceanol. Sin., 2021, 40(10):187-196. (SCI District 2,Corresponding author)

[3] Wan Y, Wang Y Z, Yang Y, Liu C, Dai Y S. Intelligent identification and classification methods of oil and gas pipeline defects by fluxgate magnetometry. Journal of Harbin Engineering University, 2021, 42(9): 1321-1329. (EI)

[4] Wan Y, Shi X L, Dai Y S. Wind field optimization inversion method for C-band net-worked SAR satellite. Marine Sciences, 2021, 45(5): 74-86. (Chinese Core Journals)

[5] Wan Y, Zheng C W, Li L G, Dai Y S, M. Dolores Esteban, José-SantosLópez-Gutiérrez, Qu X J, Zhang X Y. Wave energy assessment related to wave energy convertors in the coastal waters of China. Energy, 2020, 202, 117741. (SCI District 1 top)

[6] Wan Y, Zhang X Y, Dai Y S, Li L G, Qu X J. Azimuth Cutoff Compensation Method for SAR Wave Observation Based on Multiview Wave Spectrum Data Fusion. IEEE Access, 2020, 8, 120923-120935. (SCI District 2)

[7] Wan Y, Qu R Z, Dai Y S, Zhang X Y.Research on the Applicability of the E Spectrum and PM Spectrum as the First Guess Spectrum of SAR Wave Spectrum Inversion. IEEE Access, 2020, 8, 169082 - 169095. (SCI District 2)

[8] Wan Y, Zhang R J, Pan X D, Fan C Q, Dai Y S. Evaluation of the Significant Wave Height Data Quality for the Sentinel-3 Synthetic Aperture Radar Altimeter. Remote Sensing, 2020, 12(18), 3107. (SCI District 2 top)

[9] Wan Y, Zheng C W, Zhang J, Dai Y S, Li L G, Qu X J, Zhang X Y. The study of Ocean Wave and Wave Power Observations by Synthetic Aperture Radar in Nearshore Waters. Journal of Coastal Research, 2020, 99, 9-15. (SCI District 4)

[10] Wan Y, Zhang X Y, Dai Y S, Li W, Li L G, Qu X J. Applicability of ERA-Interim High-resolution Significant Wave Height Data in Global Sea Areas. Journal of Coastal Research, 2020, 99, 1-8. (SCI District 4)

[11] Wan Y, Shi X L, Dai Y S, Li L G, Qu X J, Zhang X Y. Research on Wind Speed Inversion Method for X-Band Networked SAR Satellite. Journal of Marine Science and Engineering, 2020, 8, 626. (SCI District 4)

[12] Wan Y, Zhang X Y, Dai Y SShi X L. An azimuth cutoff wavelength compensation method based on multiview synthetic aperture radar synchronization data. Remote Sensing Letters, 2020,11:3,245-254. (SCI District 4)

[13] Wan Y, Wang Y, Yang Y, Dai Y S. Multi feature threshold recognition method for pipeline defect types. Journal of Oil and Gas Storage and Transportation, 2020, 39(3): 268-276. (Chinese Core Journals)

[14] Wan Y, Wan L, Dai Y S. Software development of pipeline defect type identification experimental system based on mixed programming of C# and MATLAB. Journal of Experimental Technology and Management, 2020,37(5):52-57. (Chinese Core Journals)

[15] Wan Y, Wan L, Dai Y S. Wave spectrum inversion method based on Radarsat-2 satellite data and its sea trial experiment verification. Journal of Experimental Technology and Management, 2020,39(7):16-19,27. (Chinese Core Journals)

[16] Wan Y, Zhang X Y, Dai Y S, Shi X L. Research on a Method for Simulating Multiview Ocean Wave Synchronization Data by Networked SAR Satellites. Journal of Marine Science and Engineering, 2019, 7, 180. (SCI District 4)

[17] Wan Y, Fan C Q, Dai Y S, Li L G, Sun W F, Zhou P, Qu X J. Assessment of the Joint Development Potential of Wave and Wind Energy in the South China Sea. Energies, 2018, 11, 398. (SCI District 3)

[18] Wan Y, Fan C Q, Zhang J, Meng J M, Dai Y S, Li L G, Sun W F, Zhou P, Wang J, Zhang X D. Wave Energy Resource Assessment off the Coast of China around the Zhoushan Islands. Energies, 2017, 10, 1320. (SCI District 3)

[19] Wan YZhang JMeng J MWang JDai Y S. Study on wave energy resource assessing method based on altimeter data--A case study in Northwest Pacific. Acta Oceanologica Sinica, 2016, 35(3):117-129. (SCI District 2)

[20] Wan Y, Zhang J, Meng J M, Wang J. A wave energy resource assessment in the China's seas based on multi-satellite merged radar altimeter data. Acta Oceanologica Sinica, 2015,34(3)115-124. (SCI District 2)

[21] Wan Y, Zhang J, Meng J M, Wang J. Exploitable wave energy assessment based on ERA-Interim reanalysis data-A case study in the East China Sea and the South China Sea. Acta Oceanologica Sinica, 2015,34(9) 143-155. (SCI District 2)

[22] Zhang X D, Zhang J, Fan C Q, Meng J M, Wang J, Wan Y. Analysis of Dynamic Characteristics of the 21st Century Maritime Silk Road. Journal of Ocean University of China, 2018,17(3):487-497. (SCI District 2, Corresponding author)

[23] Wan Y, Fan C Q, Dai Y S, et al. Study on the development potential of wave energy in the coastal waters around Shandong Peninsula. Journal of Solar Energy, 2018, 39(12): 3311-3318. (EI)

[24] Wan Y, Zhang X B, Ni W N, et al. Study on response characteristics of resistivity measurement while drilling based on orthogonal sampling. Journal of China University of Petroleum (NATURAL SCIENCE EDITION), 2018, 42(4): 150-155. (EI)

[25] Wan Y, Zhang J, Meng J M, et al. Evaluation of wave energy in the East China Sea and South China Sea Based on era interim high resolution data. Journal of Solar Energy, 2015, 36(5): 1259-1267. (EI)

[26] Wan Y, Wan L, Dai Y S. Design of well control equipment pressure test experimental system based on LabVIEW. Journal of Laboratory Research and Exploration, 2018,37(12):102-106. (Chinese Core Journals)

[27] Wan Y, Zheng J W, Geng Y F, Wan L. Design and test of a new gas-liquid two-phase flowmeter. Journal of China University of Petroleum (NATURAL SCIENCE EDITION), 2008, 32(6): 165-168. (EI)

[28] Wan Y, Zhang X B, Ni W N, et al. Research on coil system design method of azimuth resistivity logging tool while drilling. Journal of Electronic Measurement and Instrument, 2017, 31(1): 99-105. (Chinese Core Journals)

[29] Wan Y, Zhang J, Meng J M, Wang J. Evaluation of wave energy resources in OE-W01 block based on era interim reanalysis data. Journal of Resource Science, 2014, 36(6):1278-1287. (CSCD Core Journals)

[30] Wan Y, Zhang J, Meng J M. Wave fields and wave energy resources assessment for the East China Sea based on AVISO altimeter data. In: Proceedings of Dragon 3 Mid-Term Results Symposium. Chengdu, P.R. China, 2014 (ESA SP-724, November 2014). (EI)

[31] Li L G, Wan Y, Wang Y, Yang Y, Dai Y S. Quantitative inversion method of pipeline defect depth based on support vector machine and magnetic memory technology. Journal of corrosion and protection, 2020, 41(1): 1-7. (Chinese Core Journals)

[32] Wang Y, Wan Y, Yang Y, Dai Y S. Research on pipeline defect classification method based on limit learning machine and magnetic memory technology. Journal of oil and gas field surface engineering, 2019, 38(7): 98-103. (Chinese Science and Technology Core Journals)

[33] Meng J M, Zhang J, Wan Y, Collard F. Wave energy resources assessment for the China Sea based on remote sensing data. In: Proceedings of Dragon 3 Mid-Term Results Symposium. Chengdu, P.R. China, 2014(ESA SP-724, November 2014). (EI)


Awards & Honors

[1] Exploration and practice on the training mode of computer comprehensive application innovation ability of electrical students with "one body, two wings and three integration", first prize of teaching achievement of China University of Petroleum (East China), 2021.11, Order: 3

[2] Shandong Province ideological and political demonstration course——The Principle of Microcomputer, Ministry of Education Construction—Provincial and Ministerial Level (Government category), 2021.05, Order: 4

[3] The Principle of Microcomputer—Provincial offline first-class courses, Ministry of Education Construction—Provincial and Ministerial Level (Government category), 2020.03, Order: 5/5

[4] Research and practice on the teaching mode of hierarchical and classified training of export-oriented of “The Principle of Microcomputer”, first prize of excellent teaching achievement of China University of Petroleum (East China), 2017.11, Order: 9/14

[5] Research on three-dimensional teaching mode of Provincial Excellent Course “The Principle of Microcomputer” and development of interactive platform, second prize of excellent teaching achievement of China University of Petroleum (East China), 2012.12, Order: 5/5

[6] Construction of computer measurement and control and application comprehensive laboratory, second prize of excellent teaching achievement of China University of Petroleum (East China), 2011.5, Order: 3/5



Conferences Attended

2019-07, IGARSS 2019, Yokohama, Japan.



Others

[1] A parameterized calculation method of wave power density in nearshore sea area suitable for China Sea, ZL201510155953.X, 2017.9. Patent.

[2] A joint regional classification method of ocean wave energy and wind energy resources, ZL201710624069.5, 2018.5.4. Patent.

[3] Wave truncation wavelength compensation method for multi view SAR wave spectrum data fusion, ZL201910784233.8, 2019.8.19. Patent.