王芳

作者: 时间:2022-04-23 点击数:

姓名、单位

王芳、信息工程学院 通信工程系

电子邮箱:

iefwang[at]zzu.edu.cn(请将[at]换成@

办公室:

科研楼517

研究方向:

无线通信、光通信集成芯片、氮化物半导体材料与器件

教育背景

2005-042008-03,日本三重大学,大学院工学研究科,博士,导师:小林英雄

1996-071998-07,中科院安徽光学精密机械研究所,硕士,导师:王安

1991-091995-06,郑州大学,物理工程学院,学士

工作经历

Ø 2022/02至今,郑州大学,电气与信息工程学院通信工程系,副教授

Ø  2016-032016-08,日本三重大学,大学院工学研究科,访问学者

Ø  2010-07至2022/01,郑州大学,信息工程学院通信工程系,副教授

Ø  2006-062007-03,日本三重大学,大学院工学研究科,研究助理

Ø  1998-072002-07,中国信息产业部邮电设计院,技术处,工程师

Ø  1995-071996-07,中科院安徽光学精密机械研究所,助理研究员

科研项目

Ø  河南省教育厅科学技术研究重点项目,12A510023,非连续OFDMA系统资源动态利用的研究,2012-012014-12,主持

Ø  国家自然科学基金委员会,联合基金培育项目,U1604159,多主用户认知接入多目标优化及智能云卸载研究,2017-012019-12, 参加

Ø  国家重点研发计划项目子任务,化合物半导体同质集成光电子芯片(SQ2021YFE010807)2022-2024,参加

Ø  国家重点研发计划重点专项,基于氮化物半导体的高性能深紫外激光器的研究(2016YFE0118400)2016-2019,参加

Ø  国家自然科学基金面上项目,金刚石衬底上六方相氮化硼薄膜外延生长机理的研究(62174148)2022-2025,参加

Ø  国家自然科学基金面上项目,高铟组分铟镓氮生长机理研究(61176008)2012-2015,参加

Ø  河南省科技攻关国际合作项目,基于氮化物半导体的高速可见光通信光源的研制(172102410062)2017-2018,参加

Ø  河南省高校科技创新人才支持计划,高铟组分铟镓氮半导体材料加压生长的机理研究( 13HASTIT045)2013-2015,参加

Ø    宁波市“科技创新2025”重大专项,氮化镓紫外发光二极管关键技术研究及产业化(2019B10129)子任务,2019-2021,参加

代表文章

[1]   Muhammad Nawaz   Sharif*, Muhammad Usman, Mussaab Ibrahiam Niass, Juin J. Liou, Fang Wang* and   Yuhuai Liu*,  Compositionally graded AlGaN hole source layer for   deep-ultraviolet nanowire light-emitting diode without electron blocking   layer, Nanotechnology, 2022, 33 075205 DOI:10.1088/1361-6528/ac218b

[2]   Sharif Muhammad   Nawaz*, Mussaab Ibrahim Niass, Yifu Wang, Zhongqiu Xing, Fang Wang*, Yuhuai   Liu*, The Effects of AlGaN Quantum Barriers on Carriers Flow in Deep   Ultraviolent Nanowire Laser Diode, Semiconductor Science and Technology,   36(2021)055017

[3]   Zhengqian Lu*Fang   Wang*Yuhuai Liu*The   first principle calculation of improving p-type characteristics of BXAl1-xN,   Scientific Reports, (2021) 11:12720

[4]   Xianchao Yang*, Yuhuai   Liu*, Fang Wang, Ying Lu , and Jianquan YaoTemperature   Self-Compensation Biosensor Based on LPG Concatenated With SNCS StructureIEEE   Sensors Journal21(1) (2021) 366-372.   Doi:10.1109/JSEN.2020.3014971.

[5]   Xianchao Yang, Yuhuai   Liu*, Fang Wang, Ying Lu , and Jianquan YaoSPR   sensor based on exposed core micro-structured optical fiber for salinity   detection with temperature self- compensation, Optical Materials Express,   2021,Volume 11, Issue 8, pp. 2468-2477

[6]   X. Yang, Y. Liu*, X.   Sun, X. Yang and J. Yao, "Strain- and Temperature-Sensing   Characteristics of Fiber Ring Laser Sensor With Cascaded Fabry–Perot   Interferometer and FBG," in IEEE Transactions on Instrumentation and   Measurement, vol. 70, pp. 1-7, 2021, Art no. 9512407, doi:   10.1109/TIM.2021.3105266.

[7]   Sharif Muhammad   Nawaz*, Mussaab Ibrahim Niass, Yifu Wang, Zhongqiu Xing, Fang Wang*, Yuhuai   Liu*, Enhancement of the Optoelectronic Characteristics of Deep Ultraviolet   Nanowire Laser Diodes by Induction of Bulk Polarization Charge with Graded   AlN Composition in AlxGa1-xN Waveguide, Superlattices and Microstructures,   145 (2020) 106643.

[8]   Zhong-Qiu Xing,   Yong-Jie Zhou, Yu-Huai Liu*, Fang Wang*, Reduction of Electron Leakage of   AlGaN-Based Deep Ultraviolet Laser Diode Using an Inverse-Trapezoidal   Electron Blocking Layer, Chin. Phys. Lett. 37(2) (2020)027302.

[9]   Yifu Wang, Mussaab I   N, Fang Wang*, Yuhuai Liu*, Improvement of radiative recombination rate in   deep ultraviolet laser diodes with step-like quantum barrier and   aluminum-content graded electron blocking layer[J]. Chinese Physics B, 2020,   29(1): 017301-1017301-5.

[10]   Yi-Fu   Wang, Mussaab I. Niass, Fang Wang, Yu-Huai Liu*, "Reduction of Electron   Leakage in a Deep Ultraviolet Nitride Laser Diode with a Double-Tapered   Electron Blocking Layer", Chin. Phys. Lett.. 2019, 36 (5): 057301

[11]  Mussaab   I. Niass, Junwei Zang, Zhengqian Lu, Zhongqiu Du, Xue Chen, Yipu Qu, Fang   Wang , Yuhuai Liu*, "Structure optimization of 266 nm   Al0.53GaN/Al0.75GaN SQW DUV-LD", Journal of Crystal Growth 506 (2019)   24–29.

[12]  黄靖然、王芳、杨守义, 中继OFDMA系统用户公平性的资源分配算法的研究,电子技术应用,2015年,第41卷,第2期;第97-105页。

[13]             Shuai   Zhang, Yanhui Lu, Fang Wang, and Xiaomin Mu, Spectrum Access Strategies Based   on the Ratio of Throughput to Spectrum Consumption in the Context of Spectrum   Fragment in Distributed Cognitive Radio Networks, Proceedings of the 2014   IEEE International Conference on Communication Systems (ICCS), pp.442-446.

[14]  Jingran   Huang, Fang Wang and Shouyi Yang, Relay Selection Fairness and Resource   Allocation for OFDMA Networks,International Journal of Multimedia and   Ubiquitous Engineering, Vol.10, No.6 (2015), pp.177-186

[15]  王 芳, 山本 正明, 内藤 克浩, 森 香津夫,小林 英雄,“OFDM通信方式における残留周波数オフセット補償方式の提案,映像情報メディア学会誌vol.60   No.5 pp.773-7802006.   http://www.ite.or.jp/gaiyo/jusyo1.html (获日本映像情報メディア学会47届丹羽高柳论文奖).

[16]   Fang   Wang Yuanrun Teng   Katsuhiro Naito Kazuo Mori and Hideo   Kobayashi,“Adaptive Slot and Bit Allocation   Method for OFDMA Transmission Systems”, Transaction of ITE   (The Institute of Image Information and Television Engineers)  映像情報メディア学会誌vol.62   No.6 pp.914-923   2008.

[17] Fang   Wang Yuanrun Teng   Katsuhiro Naito Kazuo Mori and Hideo   Kobayashi Adaptive   Slot and Bit Allocation Method for OFDMA Transmission Systems”,   Proc. of IEEE 2006 International Symposium on Intelligent Signal Processing   and Communication Systems (ISPACS) Tottori   Japan Dec.   2006.

[18]  Fang   Wang Masaaki Yamamoto   Katsuhiro Naito Kazuo Mori and Hideo   Kobayashi Proposal   of Residual Frequency Offset Compensation Method for OFDM System”,   Proc. of the 2nd IEEE VTS Asia Pacific Wireless Communications Symposium   (APWCS) Sapporo   Japan Aug.   2005.

获得学术奖励

Ø    王芳(1/1); 国家优秀自费留学生,国家留学基金管理委员会,国家级,2007.

Ø    王芳(1/5); OFDM 通信方式における残留周波数オフセット補償方式の提案, 47 届日本映像情报协会, 丹羽•高柳奖论文奖, 2006(王芳,山本正明,内藤克浩,森香津夫,小林英雄).

 

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