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魏莹
发布时间:2019年12月07日 19:18    作者:    点击:[]

 

一 个人基本信息

教授, 博士生导师,山东省智能感知与信号处理品牌国际联合研究基地负责人,IEEE数字信号处理技术委员会委员,IEEE Transactions on Biomedical Circuits and Systems JCR1区)副主编。20002003年于西安交通大学获得学士和硕士学位,2008年于新加坡国立大学获博士学位。2008-2009在新加坡国立大学电子与电气工程系担任Research Fellow, 2010年受聘山东大学副教授,2015年受聘教授。 一直从事智能信息处理的教学和科研工作,近5年在IEEE Transactions 上发表研究论文6篇(1/通信); 授权发明专利6项,现为IEEE Senior Member、中国电子学会高级会员,美国听力与语言协会海外会员。

 

二、论文及专利情况

 

代表性论文:

[1]     Ying Wei, TongMa, Bing Kun Ho, Yong Lian, “The Design of Low Power 16-band Non-uniform Filter Bank for Hearing Aids,” IEEE Transactions on Biomedical Circuits and Systems, vol.13, Issue 1, pp. 112-123,2019. (SCI)

[2]     Duoduo Gou, Ying Wei*, Hong Fu and Ning Yan, “Retinal Vessel Extraction Using Dynamic Multi-scale Matched Filtering and Dynamic Threshold Processing Based on Histogram Fitting”, Machine Vision and ApplicationsVol.29, pp. 655–666, 2018. (SCI)

[3]     Shaoguang Huang, Lan Tian, Xiaojie Ma and Ying Wei*, “A reconfigurable sound wave decomposition filterbank for hearing aids based on nonlinear transformation,” IEEE Transactions Biomedical Circuits and Systems, Vol. 10, Issue 2, pp. 487 - 496, 2016. (SCI)

[4]     Ying Wei*, Yinfeng Wang, “Design of Low Complexity Adjustable Filter Bank for Personalized Hearing Aid Solutions, “IEEE/ACM Transactions on Audio, Speech, and Language Processing, Vol. 23, Issue: 5, pp.923-931, 2015. (SCI)

[5]     Ying Wei*, Shaoguang Huang and Xiaojie Ma, “A Novel Approach to Design Low-cost Two-Stage Frequency-Response Masking Filters”IEEE transactions on Circuits Systems II, Vol.62, issue 10, pp. 982-9862015. (SCI)

[6]     Ying Wei* and Debao Liu, “Improved Design of Frequency-Response Masking Filters Using Band-Edge Shaping Filter with Non-Periodical Frequency Response,” IEEE Transactions On Signal Processing, Vol. 61, Issue: 13, pp. 3269 – 3278, 2013. (SCI)

[7]     Ying Wei* and Debao Liu, “A Reconfigurable Digital Filterbank for Hearing Aid Systems with a Variety of Sound Wave Decomposition Plans”IEEE transactions On Biomedical Engineering, Vol. 60, Issue: 6, pp. 1628 – 1635, 2013. (SCI)

[8]     Lan Tian, Jingxuan Wang, Ying Wei, Jianren Lu, Anting Xu and Ming Xia, “Short-wavelength infrared laser activates the auditory neurons: comparing the effect of 980 vs. 810 nm wavelength”, Lasers in Medical Science, Volume 32, Issue 2, pp 357–362, February 2017. (SCI)

[9]     J Wang, L Tian , J Lu, M Xia and Y Wei, “Effect of shorter pulse duration in cochlear neural activation with an 810-nm near-infrared laser,” Lasers in Medical Science,  vol. 32 (2) , pp. 389-396, 2017. (SCI)

[10] Ying Wei and Yong Lian*, “Frequency-Response Masking Filters Based on Serial Masking Schemes”, Circuits, Systems, and Signal Processing, Vol. 29, Issue 1, pp. 7-23, 2010. (SCI)

[11] Yong Lian*, and Ying Wei, “A Computationally Efficient Non-Uniform FIR Digital Filter Bank for Hearing Aid,” IEEE Trans. on Circuits and Systems I: Regular Papers, vol. 52, pp. 2754-2762, Dec. 2005. (SCI)

[12] Mengyang Liu, Hong Fu, Ying Wei, Yasar Abbas Ur Rehman, Lai-man Po, Wai Lun Lo, "Light field-based face liveness detection with convolutional neural networks," J. Electron. Imaging, Vol.28, Issue 1, 2019(SCI)

 

已授权发明专利:

[1]魏莹,马彤,基于频率卷曲和余弦调制的完全可重构滤波器组的设计方法,ZL201611050672.9,2018-09-18

[2]魏莹 勾多多,基于动态尺度分配的视网膜提取方法及系统,专利号ZL201610801441.02017-07-27

[3]魏莹,闫莉莉,勾多多,马彤,韩凯琳,双耳间距下基于频点选择的快速语音盲源分离方法,专利号ZL201610517794.8,  2017-05-10

[4] 魏莹 黄绍广,数字助听器基于非线性变换的可重构滤波器组及设计方法,专利号ZL2015101484317,  2016-08-24

[5] 魏莹,贾琪,田岚,数字助听器低复杂度可调滤波器组设计方案,专利号ZL201410728705.5, 2016-01-13

[6] 魏莹,黄绍广,一种改进的二级FRM滤波器设计方法,专利号ZL201410247784.82014-06-05

 

三、主持项目情况

[1] 国家自然科学基金面上项目(61671277),双耳数字助听系统声源快速分离及声信号完全可重构分解研究,2017.1-2020.12

[2] 国家自然科学基金青年项目(61201372),基于可重构滤波器组的个体化数字助听系统滤波算法研究,2013.01-2015.12

[3] 科技部农业科技成果转化资金项目,基于声信号处理的农业虫害分析识别系统应用与示范,2014.09-2016.12

[4]农业病虫害疫情早期识别与预警技术(2012CX90204),农业信息化综合服务平台应用示范,2012.11-2014.12

[5] 教育部高等学校博士学科点专项基金(20120131120088),具有可控声音分解方案的数字助听系统若干科学问题研究,2013.01-2015.12

[6]教育部留学回国人员科研启动基金,数字助听器新型补偿算法研究,2013.01-2015.12.

[7] 山东省重点研发计划(国际合作类2018JHZ007),机器人听觉系统在复杂场景下的语音增强技术研究2018.01-2020.12.

[8] 山东省重点研发计划(2018GGX101051), 双耳数字助听系统关键技术,2018.01-2020.12.

[9] 山东省科技发展计划(2013GGX10103),基于人耳特性滤波器组的数字助听系统关键技术研究,2013.01-2015.12

[10] 山东省优秀中青年科学家科研奖励基金(BS2013DX042),基于可变滤波器组的新型听力补偿技术,2013.10-2015.10

 

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