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Liu Hongshun from Qingdao, Shandong,1981New Year's Eve.
Academic identity:
Associate Professor,Master's mentor,Senior member of the Chinese Electrical Engineering Society/Deputy Director of High Voltage and Electrician Materials Specialist Committee/IEEE MEMBER
Work experience:
2014/1-So far,Shandong University,engaged in high voltage and insulation technology teaching and scientific research;
2010/7-2013/12,Jinan Military Region,engaged in weapons and equipment electrification and information technology teaching and scientific research;
2009/3-2010/3, BritainStrathclydeUniversity, Department of Electronics and Electrical Engineering, jointly cultivating doctoral students;
2004/9-2010/6, Shandong University, School of Electrical Engineering, Shuo Bo Lian Reading/Doctor of Engineering;
2000/9-2004/6, Shandong University, School of Electrical Engineering, Undergraduate/Bachelor of Engineering.
Research direction:
Diagnosis of electrical equipment and big data analysis、Electromagnetic temporary analysis and suppression、Arc discharge theory and its applications (high -voltage potential arc supply arcs and switch arcs, etc.) and electromagnetic compatibility technology of electrical equipment。
Academic works:
[1] liu hongshun, xue zhitong, Li Simeng, Li Qingquan, He dongxin, sun ying, yang jingjing. The Development Characteristics of Partial Discharge in Paperboard Depression Under Composite AC-DC Voltage [J]. IEEE Transactions on Plasma Science, 2020, 48 (11): 3781-3790. (SCIPublished on the second district)
[2] liu hongshun, xue zhitong, Li Simeng, Li Qingquan, He dongxin, XIA TIAN, Guo Jian. Characteristics of Partial Discharge in Oil-Paper Insulated Needle Place Electrode Model Under Composite Ac-DC Voltage [J]. CSee Journal of Power and Energy Systems, 2020, 6 (4): 848-857. (SCIPublished on the second district)
[3] liu hongshun, Guo Jian, He dongxin, et al. Multi-Variable Dependent Forecast Algorithm for Predicting Secondary Arc [J]. CSee Journal of Power and Energy Systems, 2020, 6 (02): 469-478. (SCIPublished on the second district)
[4]*hongshun liu; runchang li; dongxin he; jianchun wei; qingquan li, & Quot; Experimental Study of Multiple-Reignition Features of Secondary Arcs on EHV/UHV Transmission line,& Quot; In IEEE TRANSACTIONS on Industrial Electronics, VOL.66, No.4, pp. 3247-3255, 2019(SCIPublished in the first district)
[5] hongshun liu; tian xia; *dongxin he; mingming han; qingquan li; yubing duan, "The Influice of VFTO on SCSR WINDINGINGI m88 live casino gamesWITH An EQUIVALENT PeEC Model,"In International Journal of Electrical Power and Energy Systems, Vol. 110, PP. 283-292, 2019. (SCIPublished on the second district)
[6] liu hongshun; chen Taiyu; *sun qiuqin; han mingming; li qingquan; shew wah. Hoon, "Characteristics of Very Fast Transient Currents in Ultra High-Voltage Power System with Hybrid Reactive Power Compensation" in International " NAL of Electrical Power and Energy Systems, Vol. 103, PP. 587-592, 2018. (SCIPublished on the second district)
[7] Hongshun liu; jingjing yang; *liang ji; zhen Wang; zhenning huang; xiaoshuai yang; jiangtao wang., & Quot; Influice of Hybrid Reactive Power Compensation on the Secondary Arc OF Ultra-High-Voltage Transmission line,& Quot; in IEEEEACCESS, Vol. 6, PP. 38115-38123, 2018. (SCIPublished on the second district)
[8] *liu hongshun; Wang zhen; yang jingjing; li bin; ren ang, "Circuit Breaker Rate-OF-Rise Recovery Voltage in Ultra-High Voltage Lines with Hybrid Reactive Power Compensation,"in Energies, Vol. 11, NO. 1, PP. 100-113, 2018. (SCIPublished in the third district)
[9] Runchang li; *hongshun liu; jie lou; zhen Wang; bin li; liang ji, & Quot; Influore of Ultra-High-Voltage Hybrid Reactive Power Compensation on the International ULTS,& quot; in IET Generation, Transmission & Distribution, Vol. 11, NO. 5, PP. 1258-1264, 2017. (SCIPublished in the third district)
[10] dongxin he; xiaran Wang; *hongshun liu; qingquan li; gilbert teys & egrave;, & Quot; Space Charge Behavior in XLPE Cable Insulation Under AC Stress and ITS Relation to Thermo-Electrical Aging,& Quot; In IEEE TRANSACTIONS on DIELECTRICS and Electrical Insulation, Vol. 25, NO. 2, PP. 541-550, 2018. (SCIPublished in the third district)
[11] ren ang; *liu hongshun; wei jianchun; li Qingquan, "Natural Contamination and Surface Flashover on Silicone Rubber Surface Under Haze-Fog Environment" in Energies, Vol. 10, no. 10, PP. 1580-1593, 2017. (SCIPublished in the third district)
[12] *Liu Hongshun,Lu Tingting,Han Mingming,Li Bin,Crown,Li Qingquan. UHV hybrid mixed power compensation empty -load line gates over voltage frequency characteristics[j]. Grid Technology, 2015, 39 (07): 1970-1976. (eiPosted)
[13] *Liu Hongshun,Lu Tingting,Han Mingming,Zou Liang,Zhang Li,Li Qingquan. The effects of series resonant fault restrictions on the open -load line crossing voltage[j]. High voltage technology,2015,41 (10): 3392-3399.(eiPosted)
[14] Li Runchang, *Liu Hongshun,Lou Jie,Sun Qiuqin,Ma Xin,Li Qingmin. UHV non -compensation line Submarine arc electrical features and arc pillars[j]. High voltage technology,2018,44 (04): 1359-1366. (eiPosted)
[15] Summer,*Liu Hongshun,Li Runchang,Sun Qiuqin,Li Qingmin,Cong Haozhen. Subtracts arc simulation experimental image edge detection and morphological feature analysis[j]. China Electrical Engineering Journal, 2019, 39 (3): 923-932.(eiPosted)
[16] Han Mingming,Li Qingquan, *Liu Hongshun,Li Bin,Lu Tingting,King. UHV hybrid mixed power compensation line ground failure features[j]. Automation of power system,2016,40 (12): 158-164.
[17] Li Qingquan,Li Bin, *Liu Hongshun,Han Mingming,Yang Zhen. UHV hybrid mixed power compensation Router breakfire[j]. High voltage technology,2017,43 (12): 4096-4102. (eiPosted)
[18] Taiyu chen; *hongshun liu; dongyang hu; xinghua liu; tianxi xu; xiaoshuai yang; liang ji, & Quot; Shell Circulating Current and Transient Groupial Rise in 220 KV GIS,& Quot; in the Journal of Engineering, Vol. 2017, no. 13, PP. 2555-2558, 2017. (eiPosted)
[19] wang jun; *liu hongshun; niu kaicheng; wu zemin, "Investigation of the Influence of Direct Current Bias on Transformer Vibration" in International Journal of Electric Power Systems, Vol. 19, NO. 3, 2018. (eiPosted)
[20] Yang Jingjing; *Liu Hongshun; He Dongxin; Liu Xinghua; Yang Chao; Li Qingquan, Effects of UHV hybrid compensation on the characteristics of single -phase ground fault opening characteristics[j]. Journal of Electrical Engineering, 2019, 39 (23): 7083-7092. (eiPosted)
[21] Han Mingming,Li Qingquan,Liu Hongshun,Crown,Zhao Li,Li Bin. UHV hybrid mixed power compensation power station Netet fast temporary volatility frequency[j]. Grid Technology,2015,39 (12): 3353-3359. (eiPosted)
[22] huaishuo xiao; jianchun wei; hongshun liu; qingquan li; yalin shi; tongqiao zhang, & Quot; Identification Method for Power System Low-Frequency OsCillations Based on Improved VMD and Teager,& quot; in IET Generation, Transmission & Distribution, Vol. 11, NO. 16, PP. 4096-4103, 9 11 2017. (SCIPublished in the third district)
[23] Qiuqin Sun; zhibin xiao; Hongshun liu; qingmin li; feng wang, & Quot; A Study on the Transient of Secondary Arc Current of UHV Transmission Lines,& Quot; in IEEEEACCESS, Vol. 6, PP. 38616-38626, 2018. (SCIPublished in the third district)
[24] Han Mingming,Li Qingquan,Liu Hongshun,Yang Luming. Gas Insulation Power Station's parentline structure parameters to temporary overvoltage of the shell affect the analysis[j]. Journal of Electrician Technology, 2015, 30 (22): 239-246. (eiPosted)
[25] Li Simeng, Li Qingquan, Liu Hongshun, Yao Junyan, Zhao Yongzhi, Han Kejun. DC composite voltage of the radar spectrum diagram under the oil paper needle board model bureau release stage recognition[j]. China Electrical Engineering Journal, 2018, 38 (19): 5897-5908.(eiPosted)
[26] Li Simeng, Li Qingquan, Liu Hongshun, Siwen, Schiyalin, Zhang Tongqiao. Positive polar DC voltage Under the oil paper insulation needle board electrode bureau's pulse waveform characteristics and bureau's engine mechanism [j]. China Electrical Engineering Journal, 2018, 38 (20): 6173-6187.(eiPosted)
m88 sports bettingmonograph:
[1] Electric power system economy -type faultstacting technology[m]. Li Qingmin, Lou Jie, Zhang Li, Liu Hongshun, Zou Liang. Beijing: Machinery Industry Press,2011.
[2] Submarine arc physical characteristics and suppression technology[m]. Li Qingmin, Sun Qiuqin, Zhang Li, Liu Hongshun, Cong Haozhen. Beijing: Science Press,2018.
Authorized patent:
[1]Liu Hongshun;Li Qingquan;Han Mingming;Lu Tingting;Zhao Tong;Zou Liang;Li Bin.Hybrid non -contribution compensation for substation in the substation of the fast temporary state vapor frequency characteristic analysis method[p].Chinese invention patent: ZL201510489812.1, 2017/6/16.
[2]Liu Hongshun;Han Mingming;Li Bin;Li Qingquan;Li Qingmin;Lou Jie;Sun Qiuqin. Dive the arc characteristics prediction method for dive the arc characteristics for the multi -variable action of single -phase heavy gates[p].Chinese invention patent: ZL201610322702.0, 2018/7/10.
[3]Liu Hongshun;Xue Zhitong;Li Simeng;Li Qingquan;Wang Xiaolong;He Dongxin.Compound voltage under the needle board oil gap local discharge modeling and analysis method[p]. Chinese invention patent: ZL201810796963.5, 2019/10/11.
[4]Wang Xiaolong;Liu Hongshun;Li Qingquan;Zhang Shiliang;Duan Yubing.Public discharge detection device with accurate positioning[p]. China Practical New Patent: ZL201910074193.8, 2019/09/20.
[5]Li Hang;Sun Baicong;Wang Jiaming;Liu Hongshun;Chen Taiyu.Tail gas purification device and application based on the principle of high -voltage static dust removal principle[p]. China Practical New Patent: ZL201720627207.0, 2017/06/01.
Scientific research project:
Host main scientific research project status:
1. Electric-Hot-Mechanical multi -physical field coupling under the action of changing transformer oil paper insulation and degradation mechanisms,National Natural Science Foundation Smart Grid Union Fund Tobes[U1966209](2020.1-2023.12)
2. UHV hybrid mixing non -contribution compensation mechanism for the characteristics of single -phase ground failure and potential arc characteristics,National Natural Science Foundation Youth Fund Project[51507095](2016.1-2018.12)
3. Under high pressure hybrid compensation, low -frequency oscillations on the impact mechanism of low -frequency oscillation on single -phase fault electromagnetic state,Shandong Province Outstanding Middle -aged and Middle -aged Scientists Reward Fund[BS2015NJ011](2016.1-2017.12)
4. Ultra -high -voltage substation Second system anti -interference key technical theoretical research,Southern Power Grid Company Science and Technology Project Subtotes (2019.9-2021.9)
5. Big data -based analysis220KVDynamic assessment and prediction of the state of the deformation M88 games apkstation equipment,State Grid Shandong Electric Power Company Science and Technology Project (2018.1-2019.12)
6. GISResearch on the Ring of the Shell Ring and the Power Power,State Grid Shandong Electric Power Company Science and Technology Project (2017.1-2018.12)
7. Research on the Overvoltage Insulation Cooperation Plan of the Lightning Factory for Power Plant,Shandong Electric Power Engineering Consulting Institute (2016.1-2017.12)
8. China Post -Doctoral Science Fund on the project[2015m572032](2016.1-2017.12)
9. Basic Business Fee Project (2014.1-2016.12)
The main scientific research project involved:
1. Maritime Fan Lightning Morning Arc Injection Damage Mechanism and high -frequency raw electromagnetic effect,National Natural Science Foundation on Face[51677110](2017.1-2020.12)
2. Electric vehicle drive system and battery efficient charging integrated hybrid topology optimization and control,National Natural Science Foundation on Face[51577109](2016.1-2019.12)
3. Multi -physical field change transformer insulation and deterioration mechanism and status assessment technology research,National Grid Corporation Headquarters Science and Technology Project (2020.1-2021.12)
Contact information:
lHs@sdu.edu.cn