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  • 刘颖异 ( 副教授 )

    的个人主页 http://shi.buaa.edu.cn/liuyingyi/en/index.htm

  •   副教授   硕士生导师
  • 主要任职:检测系副主任
个人简介

刘颖异,工学博士,副教授,硕士生导师, 自动化科学与电气工程学院检测系副主任。2003年毕业于西安交通大学,并获工学学士学位,同年被保送至西安交通大学电气工程专业攻读硕士学位,并于2005年被保送至同一专业提前攻博。2009年博士毕业,并获工学博士学位。同年进入北航自动化学院从事博士后研究工作,2011年出站并留校任教。2014至2015于新西兰的坎特伯雷大学,作为访问学者进行了为期1年的交流访问。

目前,主要围绕检测技术、人工智能、大数据分析和虚拟仿真技术等领域展开研究工作。作为负责人,主持完成了国家自然科学基金面上项目、国家自然科学基金青年项目、军科委基础加强重点项目子课题,北京市自然科学基金、教育部培育基金、工信部培育基金等各类纵横向项目30余项,并作为骨干参与2030“新一代人工智能”重大项目课题、863课题、千人计划等纵横向课题10余项。相关成果,在航空航天、能源电力、医疗、交通运输等领域得到批量化应用。在IEEE trans、IET等国内外期刊和国际会议中发表学术论文80余篇,其中SCI检索论文30余篇,当中包括以第1作者发表IEEE trans期刊长文7篇。获得授权发明专利20余项。并先后获得北京市优秀专利奖、中国仪器仪表学会发明技术奖、中国电工技术学会科学技术奖、国家电网公司优秀专利奖等各类科技奖励近10项,获得各类教学奖励8项,本人并被评为北航“优秀博士后”、“蓝天新秀”和“青年拔尖人才”。 


1) 研究方向

[1]检测技术

[2]大数据挖掘与分析

[3]人工智能

[4]虚拟仿真技术


2)工作经历

2009-06 至 2011-03, 北京航空航空航天大学, 自动化科学与电气工程学院, 博士后

2014-04 至 2015-04, 新西兰坎特伯雷大学,访问学者

2011-03 至今, 北京航空航空航天大学, 自动化科学与电气工程学院, 副教授


3)近年来主持的主要科研项目

[1]  国家自然科学基金面上项目

[2]  国家自然科学基金青年项目

[3] 北京市自然科学基金

[4] 军科委基础加强重点项目子课题

[5] 江苏省科技项目

[6] 国家电网公司科技项目


4) 学术奖励与荣誉

[1]  中国电机工程学会,高影响力论文奖,2021

[2] 中国仪器仪表学会技术发明二等奖, 2020

[3] 中国电工技术学会科技进步一等奖, 2017

[4] 北京市人民政府, 技术发明奖, 2016

[5] 中国电工技术学会科技进步二等奖, 2015

[6] 国家电网公司专利奖二等奖,2014

[7] 中国电力科学研究院科学进步一等奖,2014

[8] 中国电力科学研究院优秀专利奖,2013

[9] 北航青年拔尖人才, 2017

[10] 北航蓝天新秀, 2012

[11] 北航优秀博士后, 2011


5)教学奖励

[1] 中国仪器仪表学会教学成果二等奖,2022

[2] 北京航空航天大学教学成果一等奖,2021

[3] 北京航空航天大学教学成果一等奖,2020

[4] 中国自动化学会教学成果二等奖,2019

[5] 北京航空航天大学教学成果二等奖,2019

[6]北京航空航天大学优秀硕士学位论文指导教师, 2018

[7] 北京航空航天大学教学成果二等奖,2015

[8] 北京航空航天大学教学成果二等奖,2013


6)学术兼职 

[1] IEEE PES 输配电技术委员会架空线路分委会常务理事

[2] 新疆智能传感器自治区重点实验室学术委员会委员

[3] 中国电工技术学会电磁检测技术及装备专业委员会委员

[4] 武警装备部项目会评专家

[5] 国家自然科学基金委的函评专家

[6] 教育部论文评审专家

[7] 国际期刊 Insight - Power and Electrical 的编委、SCI 期刊 Applied Science 的客座编辑

[8] IEEE Transactions 系列、IET Transactions 系列等多种 SCI 期刊的审稿人


7)发表的主要论文

[1]Research on the Simulation Method for HVDC Continuous Positive Corona Discharge,IEEE Transaction on Plasma Science,50(9):2805-2814,2022(SCI)

[2]Research and Application of Semi-Supervised Category Dictionary Model Based on Transfer Learning,APPLIED SCIENCES,13(13),2023

[3] Research on Calculated Method for Space Electric Field around HVDC Transmission Lines with Buildings Nearby, IET Generation, Transmission & Distribution,16 (17):3363-3373,2022(SCI)

[4] Health Assessment and Prediction of Overhead Line Based on Health Index, IEEE Transactions on Industrial Electronics, 2019,66 (7):5546-5557(SCI)

[5] A Method for the Indirect Detection of Audible Noise From High-Voltage Direct Current Transmission Lines, IEEE Transactions on Instrumentation and Measurement, 2020, 69 (7):pp.4358-4369(SCI)

[6] Analysis of Self-Correlation Characteristics of Corona Current Spectrum on UHVDC Transmission Line, IEEE Transactions on Dielectrics and Electrical Insulation, 2018,25(3):928-938(SCI)

[7] Analysis on the Spectrum Characteristic of Corona Current and its Relationship with Radio Interference on UHVDC Transmission Line, IEEE Transactions on Dielectrics and Electrical Insulation, 2016,23(6):3336~3345(SCI)

[8] Ensemble based reactivated regularization extreme learning machine for classification, Neurocomputing, 2018(SCI)

[9] Analysis on the Spectrum Characteristic of Corona Current and its Relationship with Radio Interference on UHVDC Transmission Line [J], IEEE Transactions on Dielectrics and Electrical Insulation, 23(6), pp. 3336-3345, 2016.(SCI)

[10] A Method for Calculating Corona Inception Voltage of UHVDC Transmission Lines with Frequency-Domain Characteristics of Corona Current [J], IET Generation, Transmission & Distribution, 2018. (SCI)

[11] Digital multiple notch filter design with Nelder-Mead simplex method [J], IEICE Transactions on Fundamentals of Electronics, Communications and Computer Sciences, 2017,Vol.E100-A, No.1 pp.259 -265.(SCI) 

[12] Noise Suppression of Corona Current Measurement From HVdc Transmission Lines[J],IEEE Transactions on Instrumentation and Measurement, 65(2), pp 264-275, 2015. (SCI)

[13] Research of Dynamic Optimization for the Cam Design Structure of MCCB [J]. IEEE Transactions on Components, Packaging and Manufacturing Technology,6(3), pp 390-399, 2015. (SCI)

[14] Research of an Improved Interruption Model Coupling Air Blast for the Low Voltage Circuit Breaker[J]. International Journal of Applied Electromagnetics and Mechanics[J], 49(2), pp 299-314, 2015. (SCI)

[15] Development of a Wireless Sensor Network for Distributed Measurement of Total Electric Field under HVDC Transmission Lines[J]. International Journal of Distributed Sensor Networks, pp 1-9, 2014 (SCI)

[16] Relative Localization in Wireless Sensor Networks for Measurement of Electric Fields under HVDC Transmission Lines, SENSORS, 15(2), pp 3540-3564, 2015. (SCI)

[17] Experiment and simulation research on influence of different main contact system on the interruption performance of control and protective switch. IEEE Transactions on Power Delivery, 2010(SCI)

[18]Research of Dynamic Optimization for the Cam Design Structure of MCCB, IEEE Transactions on Components Packaging and Manufacturing Technology, 2016, 6(3):390~399.(SCI)

[19] Research on the correlation between the frequency-domain characteristics of corona current and A-weighted sound level of audible noise for UHV DC transmission line, IET Generation, Transmission & Distribution, 2018, 12(11): 2549-2556(SCI)

[20] A Joint Unsupervised Cross-Domain Model via Scalable Discriminative Extreme Learning Machine, COGNITIVE COMPUTATION,2018, 10(4): 577-590(SCI)

[21] Research on Multi-attribute Decision-making in Condition Evaluation for Power Transformer Using Fuzzy AHP and Modified Weighted Averaging Combination, IET Generation, Transmission & Distribution, 2016, 10(15):3855-3864(SCI)

[22] An Integrated Decision-Making Model for Transformer Condition Assessment Using Game Theory and Modified Evidence Combination Extended by D Numbers, ENERGIES, 2016, 9(9).(SCI)

[23]Research on the Correlation between Corona Current Spectrum and Audible Noise Spectrum of HVDC Transmission Line, Physics of Plasmas ,2017, 24(11).(SCI)

[24]Design of the corona current measurement sensor with wide bandwidth under DC ultra high-voltage environment. Measurement Science and Technology, 2011, 22(12):1-9.(SCI)

[25] Research of an Improved Interruption Model Coupling Air Blast for the Low Voltage Circuit Breaker, International Journal of Applied Electromagnetics and Mechanics, 2015, 49(2):299~314.(SCI)

[26] Analysis of the relationship between DC component and spectral components of corona current on HVDC transmission lines. IET Generation, Transmission & Distribution, 2019,(SCI)

[27]Calculation and Analysis of Dynamic Characteristics of Multilink Permanent Magnetic Actuator  in  Vacuum Circuit Breaker,IEICE Transactions  on Electronics,2010,E93C(9):1404~1410,(SCI)

[28]Analysis and research on electro-dynamic repulsion force acting on the paralled conductors in air circuit breaker,IEICE TRANSACTIONS ON ELECTRONICS,2007,E90C(7):1466~1471,(SCI)

[29]  Analysis and optimization for a contactor with feedback controlled magnet system,IEICE Transactions on Electronics,2008,E91C(8):1273~1279(SCI)

[30]  Corona current and audible noise characteristics of HVDC transmission lines and their relationship at high-altitude,IET GENERATION TRANSMISSION & DISTRIBUTION,2023,17(15):3399-3409,(SCI)

[31]Analysis and Improvement of Linkage Transfer Position for the Operating Mechanism of MCCB,26 (1) , IEEE Transactions on Power Delivery, 2010,pp.214-219(SCI)

[32]Analysis and optimization for a contactor with feedback controlled magnet system,IEICE Transactions on Electronics,2008,E91C (8):1273-1279,(SCI)

[33]Simulation and Analysis for a Permanent Contactor with and without Current-Feedback System,IEICE Transactions on Electronics,2009,E92C (8):1040-1044,(SCI)

[34]Thermal Simulation of a Contactor with Feedback Controlled Magnet System,IEICE Transactions on Electronics,2009,E93C(9):1424~1430,(SCI)

[35]   CIGRE 2016未来电力系统及主动配电系统技术新动向,中国电机工程学报,2017,(1):27~36

[36]   带电流反馈的永磁接触器动态特性仿真与 分析,中国电机工程学报,2010,(15)

[37]  基于双ARM构架压力试验机的远程监测系统设计,应用科技,2016,(1):30~35


8)发明专利

[1]  一种可听噪声的间接检测方法,201811414724.5

[2]  一种无线电干扰间接获取方法, 201910373674.9

[3]  一种由电晕电流数据获得可听噪声的方法, 201610770708.4

[4]  一种基于FPGA和ARM的数据传输方法及系统 , 201210043801.7

[5 ] 一种特高压直流电晕电流取样电阻传感器, 201110268069.9

[6]  一种新型三维应力测量传感器,201310349793.3

[7]  一种配电设备健康指数通用评价方法 , 201510845887.9

[8] 一种旋转驻极体式机械天线低频通信系统, 201811009565.0

[9] 一种直流电场测量用数据采集系统,201310270078.0

[10] 带电压反馈智能控制的交流接触器, 200510096055.8

[11] 一种基于仿真建模的旋转驻极体式机械天线性能评估方法 -201910221622.X

[12] 一种泛在传感器网络实验教学系统及其实验教学方法, 201910556324.6

[13] 一种自组织可重构无线传感器网络的组建方法,201110284101.2

[14] 一种路面温度信息记录仪及测量方法,201110349042.2

[15] 一种正极性连续电晕放电电流的仿真方法,202010607567.0

[16] 一种用于特高压试验线路管母线处的圆柱形一体化声强传感测量记录装置与实现方法,202110792615.2

[17] 用于特高压线路分裂导线内侧的立方体形声强测量装置与实现方法,20211079261 4.8

[18] 一种面向配电设备状态信息的电子化转抄装置 ,201520966788.1

[19] 光纤环声发射传感器动态建模方法及其频率响应特性设计方法, 202110822003.3

[20] 一种基于光纤干涉仪的扭力轴多通道声发射检测系统和缺陷探测方法, 202110822146.4

[21] 一种可用于特高压输电线路邻近区域声强检测的球形传感装置及实现方法,202110792696.6

[22] 一种配电设备健康指数通用评价方法 ,201510845887.9

[23] 利用相似度测度的变压器局部放电声发射事件计数方法 , 202110822004.8

[24] 一种基于多模态融合感知的绝缘子串状态诊断方法和系统 - 202310668304.4


9)学生培养

[1]所指导的研究生曾多次在IEEE等顶刊发表学术论文,并多次获得如下奖励:

北京市优秀毕业生

北航优秀硕士论文

北航优秀毕业生

北航三好学生

北航优秀学术论文奖

北航优秀团员

一等学业奖学金

国家奖学金


[2]所指导的本科生曾获得如下奖励:

北航自动化学院优秀毕业论文

冯如杯”学生创意大赛一等奖和三等奖

冯如杯”科技竞赛院三等奖1项






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