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个人简介

韩宁 职称:副教授/硕导 办公室:四牌楼健雄院311室 学习经历: 2000年/09月-2004年/06月,南京大学,本科 2004年/09月-2009年/06月,南京大学,博士 工作经历: 2004年/11月-2005年/09月,香港理工大学,进修,研究助理 2006年/07月-2007年/05月,香港理工大学,进修,研究助理 2009年/10月-2010年/10月,香港大学,工作,博士后 2010年/11月-2012年/11月,南京大学,工作,博士后 2012年/11月-今,东南大学,工作 教授课程: 本科生课程,数字信号处理——大三,秋季 硕士生课程,声学原理——研一,秋季 获奖情况: 教育部科技进步奖一等奖,2017,排名第六 科研项目: 项目名称 项目类别 项目时间 工作类别 项目金额 特征提取置前的主动目标检测方法研究 国家自然科学基金项目 2019.01-2022.12 应用基础研究 63万 XX研究 海军装备部预研项目 2018.01-2020.12 预先研究项目 62万 XX研究 海军装备部预研项目 2015.07-2015.12 预先研究项目 300万 基于换能器阵列的单向声边界的研究 国家自然科学基金项目 2012.01-2014.12 应用基础研究 20万 专利: 专利号 专利名称 专利类型 ZL201610248569.9 一种基于等腰梯形接收阵的减小测向多值问题的方法 发明专利授权 ZL201410191835.X 有源单向声传播装置及实现单向声传播的方法 发明专利授权 ZL100495533 声强有源声屏障 发明专利授权 ZL101387547B 散射声预测方法 发明专利授权

研究领域

1、水声信号处理:主动目标的分类与识别,神经网络在水声信号处理方面的应用 2、有源声场控制:散射声的有源控制,神经网络在语音、噪声信号处理方面的应用

近期论文

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[1] Han N., Active control of the scattered radiation with a reflecting surface, Noise Control Engineering Journal, 2019, 67 (3): 190~196. (SCI) [2] Han N., Fan Z. H. and Fang S. L., Phase unwrapping methods for solving the ambiguity in current velocity estimation based on combined signal design, Flow Measurement & Instrumentation, 2018, 59: 126~134. (SCI) [3] Han N. and Fang S. L., Investigation of performance improvements for active reflection control system through 2D time-domain simulation, Building and Environment, 2015, 94 (2): 867~872. (SCI) [4] Han N. and Fang S. L., A combined pulse modulation-processing method for ADCP applications, Flow Measurement and Instrumentation, 2015, 45: 78~81. (SCI) [5] Han N. and Tao J. C., Unidirectional acoustic boundary through active control system in one dimensional duct, Noise Control Engineering Journal, 2015, 63 (5): 388~395. (SCI) [6] Han N. and Wang C. Q., Time-Domain Simulation for Active Noise Control In a Two Dimensional Duct, Noise Control Engineering Journal, 2015, 63 (1): 59~71. (SCI) [7] Han N.,Qiu X. J. and Feng S. Z., Active control of three-dimension impulsive scattered radiation based on a prediction method, Mechanical Systems and Signal Processing, 2012, 30: 267-273. (SCI) [8] Han N., Feng S. Z. and Qiu X. J., Active control of one-dimension impulsive reflection based on a prediction method, Journal of the Acoustical Society of America, 2010, 127: 1193-1196. (SCI) [9] Han N., Qiu X. J. and Mak C.M., A further study of the prediction method for aerodynamic sound produced by two in-duct elements, Journal of Sound and Vibration, 2006, 294: 374-380. (SCI) [10] Han N. and Qiu X. J., A study of sound intensity control for active noise barriers, Applied Acoustics, 2007, 68: 1297-1306. (SCI) [11] Han N. and Mak C.M., Prediction of flow-generated noise produced by acoustic and aerodynamic interactions of multiple in-duct elements, Applied Acoustics, 2008, 69: 566-573. (SCI) [12] Han N. and Mak C.M., Prediction of the absorption exponent in rectangular enclosures with a single absorbent boundary, Applied Acoustics, 2009, 70: 297-299. (SCI) [13] Han N. and Mak C.M., Improving speech intelligibility in classrooms through the mirror image model, Applied Acoustics, 2008, 69: 945-950. (SCI) [14] Han N. and Mak C.M., A further study of a mathematical model for a screen in open-plan offices, Applied Acoustics,2008, 69: 1114-1119. (SCI) [15] Han N. and Huang S. X., Velocity Estimation Based on the Broadband Acoustic Signal, International Congress on Noise Control Engineering (INTER-NOISE 2018), August 26-29, 2018, Chicago, USA. (EI) [16] Han N. and Yao S., DOA estimation through isosceles trapezoidal array, International Congress on Noise Control Engineering (INTER-NOISE 2016), August 21-24, 2016, Hamburg, Germany. (EI) [17] Han N. and Tao J. C., Unidirectional acoustic boundary through active control system in one-dimensional duct, 22nd International Congress on Sound and Vibration, July 12-16, 2015, Florence, Italy. (EI) [18] Han N. and Tao J. C., One-dimensional unidirectional acoustic boundary through active control method, 43rd International Congress on Noise Control Engineering, November 16-19, 2014, Melbourne, Australia. (EI) [19] Han N. and Qiu X. J., Active control on the scattered radiation by a rigid surface, 163rd ASA, 11th WESPAC, 9th ASC, May 13-18, 2012, Hong Kong, China. [20] Han N., Mak C.M. and X. J. Qiu, A study of improving speech intelligibility in Classrooms, 19th International Congress on Acoustics, 2007, Madrid, Spain. [21] Han N. and Qiu X. J., Acoustic intensity control for increasing the insertion loss of noise barrier, 9th Western Pacific Acoustics Conference, 2006, Seoul, Korea.

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