陈振兴  

博士生导师

性别:男

出生年月:1982-10-01

学历:博士研究生毕业

学位:工学博士学位

在职信息:在岗

所在单位:电子信息工程系

入职时间:2013-03-01

学科:电子信息工程

个人简介

陈振兴Zhenxing Chen),副教授,硕士、博士研究生导师,任职于中国地质大学(武汉)机械与电子信息学院电子信息工程系。主要从事无线通信、高维信号处理、光通信方向研究。累积主持/参与国家自然科学基金、湖北省重大攻关项目、湖北省重点研发项目、留学回国基金、企业横向等研究项目30多项,发表国内外期刊、会议论文40多篇,授权发明专利、实用新型、计算机软件著作权等30多项。

研究方向:高维信号传输,多载波调制解调,索引调制,MIMO,信道编译码,非正交多址,智能表面,智能信号处理,通信系统建模/仿真/FPGA实现等。

招生说明:每年招收电子信息、通信工程方向学术型硕士、专业型硕士、博士研究生,欢迎具备信号处理、无线通信、FPGA 开发基础的学生报考。

 

教育和工作经历

20133至今,中国地质大学(武汉),机械与电子信息学院,电子信息工程系

20129—20132月,庆尚大学(韩国),工学研究院

20089—20128月,庆尚大学(韩国),信息设备工程,工学博士

20069—20088月,庆尚大学(韩国),信息设备工程,工学硕士

 

科研项目

1、湖北省重大攻关项目,6G***研制与验证,主持(课题)

2、湖北省重点研发项目,面向6G新场景的高维智能通信关键技术研究,主持

3、国家自然科学基金面上项目,高动态对抗环境下人机协作集群系统的协同控制与博弈决策,参与

4、湖北省自然科学基金面上项目,基于多维信号索引调制的OFDM系统研究,主持

5、国家自然科学基金面上项目,基于传感器网络的水环境监测及其时空场重建方法研究,参与

6、中央高校专项基金项目(优秀青年基金),基于高维信号映射与解映射的数字光通信系统研究,主持

7、国家自然科学基金青年项目,基于多维信号星座图的高质量数字传输系统研究,主持

8、教育部科技项目(留学回国人员科研启动基金),降低三维正交频分复用系统峰均功率比的研究,主持

9、中央高校专项基金项目(杰出人才培育基金),海外优秀博士博士后项目,主持

10、横向项目,智能点胶机器人研发项目,主持

11、横向项目,基于GNU Radio软件无线电的实验系统研究,参与

12、横向项目,CX-12(01)短码编译码,参与

13、横向项目,目标提取实时处理软件,参与

14、横向项目,客轮人员位置感知节点及网络性能测试与数据分析处理,参与

15、横向项目,基于大数据的用户通信行为分析,参与

16、中央高校专项基金项目(青年基金),探地雷达信号处理方法的研究,参与

 

教学项目

1、湖北本科高校省级教学改革研究项目,基于6G研发背景下的《宽带无线通信》教学内容研究与实践,主持

2、国家级产学合作协同育人项目,面向6G的《通信原理》教学内容与课程体系改革,主持

3、国家级产学合作协同育人项目,基于通信原理课程群软件无线电师资培训,主持

4、国家级产学合作协同育人项目,车联网软件通用平台开发,参与

5、校级教学改革项目,基于6G研发背景下的《宽带无线通信》教学内容研究与实践,主持

6、校级教学改革项目,《通信原理》课程教学方法的改革与实践,主持

7、校级实践育人项目,跨学科综合创新实践平台建设,参与

8、校级实践育人项目,普及型精英创新实践教学模式研究,参与

 

学术论文

1Si Ouyang and Zhenxing Chen*, “Orthogonal time sequency multiplexing with dual-mode index modulation,” IEEE Communications letters, vol. 30, pp. 174-178, Jan. 2026.

2Zhenxing Chen, Pan Gao, Tengfei Ding, Zhiwei Liu, and Mingfeng Ge, “Practical Prescribed-Time Resource Allocation of NELAs with Event-Triggered Communication and Input Saturation,” IEEE Transactions on Network and Service Management, vol. 22, no. 4, pp. 3721-3731, Aug. 2025.

3Zhenxing Chen* and Si Ouyang, “Wavelet-based three-dimensional OTFS with dual-mode index modulation,” IEEE Communications letters, vol. 29, no. 5, pp. 1151-1155, May 2025.

4Zhenxing Chen, Qingyao Tian, and Seog Geun Kang, “Coordinate interleaved high-dimensional OFDM with index modulation,” IEEE Communications letters, vol. 27, no. 5, pp. 1432-1436, May 2023.

5Weizheng Jin, Mengyi Wang*, Guanyi Yang, and Zhenxing Chen* “Energy-efficient and fading-resistant multi-mode OFDM-IM with high dimensional mapping,” IEEE Transactions on Wireless Communications, vol. 22, no. 8, pp. 5005-5017, Aug. 2023.

6Mengyi Wang, Zhihui Chen, and Zhenxing Chen*, “Dual-Mode index modulation aided 3D-OFDM,” IEEE Communications letters, vol. 26, no. 3, pp. 612-616, Mar. 2021.

7Mengyi Wang, Zhihui Chen, and Zhenxing Chen*, “Energy-Efficient index modulation with in-phase/quadrature format in the generalized fading channel,” IEEE Access, vol. 9, pp. 117938-117948, Aug. 2021.

8Tianye Huang, Xueyan Dang, Lei Han, Gangshun Zhang, Jianxing Pan, Yuhan Wang, and Zhenxing Chen*, “Dual-channel sensor based on Tamm plasmon polariton and defect mode hybridization in topological insulator covered photonic crystals,” Journal of the Optical Society of America B, vol. 38, no. 6, pp. 1951-1957, June 2021.

9Zhenxing Chen, Yi Lu, and Seog Geun Kang, “High-dimensional OFDM with in-phase/quadrature index modulation,” IEEE Access, vol. 9, pp. 44198-44206, Mar. 2021.

10Xufan Zhang, Yong Wang, Zhenxing Chen, Jun Yan, and Dianhong Wang, “Saliency detection via image sparse representation and color features combination,” Multimedia Tools and Applications, vol. 79, no. 31-32, pp. 23147-23159, Aug. 2020.

11Xufan Zhang, Yong Wang, Jun Yan, Zhenxing Chen, and Dianhong Wang, “A unified saliency detection framework for visible and infrared images,” Multimedia Tools and Applications, vol. 79, no. 25-26, pp. 17331-17348, July 2020.

12Jianxing Pan, Zhenxing Chen, Tianye Huang, Shuwen Zeng, Zhuo Cheng, Pan, Huang, Xiang Zhao, Perry Ping Shum, and Gilberto Brambilla, “Simultaneous mid-infrared gas sensing and upconversion based on third harmonic generation in cascaded waveguides,” IEEE Photonics Journal, vol. 12, no. 2, pp. 1-12, April 2020.

13Guizhen Xu, Jun Yan, Zhenxing Chen, Tianye Huang, Zhuo Cheng, Perry Ping Shum, and Gilberto Brambilla, “Design of germanium-silicon carbide hybrid waveguides for mid-infrared third-order parametric conversion,” Optics Communications, vol. 456, pp. 1-5, Feb. 2020.

14Lei Han, Zhenxing Chen, Tianye Huang, Huafeng Ding, and Chuan Wu, “Sensitivity enhancement of Ag-ITO-TMDCs-Graphene Nanostructure based on surface plasmon resonance biosensors,” Plasmonics, (2020)15:693-701.

15Yuan Xie, Zhenxing Chen, Jun Yan, Yiheng Wu, Tianye Huang, and Zhuo Cheng, “Combination of surface plasmon polaritons and subwavelength grating for polarization beam splitting,” Plasmonics, (2020)15:235-241.

16Yuan Xie, Zhenxing Chen, Yiheng Wu, Yangcheng Zhao, Tianye Huang, and Zhuo Cheng, “Bloch supermode interaction for high-performance polarization beam splitting,” Optical Engineering, vol. 58, no. 9, pp. 095102.1-5, Sep. 2019.

17Zhenxing Chen, Jiaheng Liu, Shuang Li, and Seog Geun Kang, “New 3D 16-ary signal constellations and their symbol error probabilities in AWGN and Rayleigh fading channels,” Wireless Communications and Mobile Computing, Volume 2018, Article ID 7178631, 6 pages, 2018.

18Shuang Li, Shicheng Zhang, Zhenxing Chen, and Seog Geun Kang, “A hybrid decoding of Reed-Muller codes,” International Journal of Distributed Sensor Networks, vol. 13, no. 2, 8 pages, 2017.

19Zhenxing Chen and Seog Geun Kang, “A Three-Dimensional OFDM System with PAPR Reduction Method for Wireless Sensor Networks,” International Journal of Distributed Sensor Networks, Volume 2014, Article ID 312308, 6 pages, 2014.

20Seog Geun Kang, Zhenxing Chen, Ju Yeong Kim, Jin Sub Bae, and Jong-Soo Lim, “Construction of higher-level 3-D signal constellations and their accurate symbol error probabilities in AWGN,” IEEE Transactions on Signal Processing, vol. 59, no. 12, pp. 6267-6272, Dec. 2011.

21Zhenxing Chen and Seog Geun Kang, “Three-dimensional modulation formats with constant power for optical communications,” Optics Express, vol. 19, no. 23, pp. 22358-22363, Nov. 2011.

22Zhenxing Chen, Eun Chang Choi, and Seog Geun Kang, “Closed-form expressions for the symbol error probability of 3-D OFDM,” IEEE Communications letters, vol. 14, no. 2, pp. 112-114, Feb. 2010.

23、刘晓旭,李响,周伟,陈振兴*基于深度学习的高维索引调制OFDM检测器研究,光通信研究,已录用,2025.

24、王孟依,陈振兴*,陈智慧,基于三级LLR检测的广义零填充三模OFDM索引调制系统研究,电子学报,49(7)1291-12972021.

25、张祥莉,王勇,王典洪,陈振兴*四维信号星座图改进及相应OFDM系统模型设计 电子学报,48(8)1486-14922020.

26Si Ouyang, Zhenxing Chen, Tao Ren, Xiang Li, Ziang Wang, and Jingyi Xu, “Three-Dimensional MIMO-OTFS system for high-speed mobile communication,” 2025 IEEE 102nd Vehicular Technology Conference (VTC2025-Fall), Chengdu, China, pp. 1-6, Oct. 2025.

27Shuang Ma, Zhenxing Chen, and Seog Geun Kang, “Performance analysis of 3-D data transmission system in the presence of impulsive noise,” 2012 International Conference on Information and Communication Technology Convergence (ICTC), pp. 601-602, Jeju, Korea, Oct. 2012.

28Zhenxing Chen and Seog Geun Kang, “An FPGA implementation of 3-D signal transmission system,” 2012 IEEE International Conference on Consumer Electronics (ICCE), pp. 368-369, Las Vegas, Jan. 2012.

29Zhenxing Chen, Jin Sub Bae, Se-Kyo Chung, Jin-Whan Koh, and Seog Geun Kang, “Multi-envelope 3-dimensional constellations for polarization shift keying modulation,” 2010 International Conference on Information and Communication Technology Convergence (ICTC), pp. 173-174, Jeju, Korea, Nov. 2010.

30Zhenxing Chen and Seog Geun Kang, “Probability of symbol error of OFDM system with 3-Dimensional signal constellations,” IEEE 13th International Symposium on Consumer Electronics, ISCE’09, pp. 442-446, Kyoto, Japan, May 2009.

 

教学论文

1、陈振兴,黄田野,王勇,面向6G的宽带无线通信课程内容研究与实践,科教导刊(电子版),第31期,页码:4-6202411.

2、陈振兴,黄田野,引导教学在通信原理课程中的应用探讨,教育教学论坛,第37期,页码:105-10820219.

3、陈振兴,殷蔚明,基于通信原理课程的多维度本科教学探索实践,教育教学论坛,第46期,页码:241-242201711.

 

专利(授权发明、实用新型、软著)

1、陈振兴、欧阳丝等,基于小波变换的高维索引调制OTFS 实现方法及系统,专利号:ZL202411844959.3

2、陈振兴,田清瑶等,基于坐标交织的高维索引调制OFDM实现方法及设备, 专利号:ZL202211651087.X

3、陈振兴,陆奕等,一种基于多维度信号索引调制的正交频分复用方法及系统,专利号:ZL202011248093.1

4、陈振兴,张煜蓉等,基于两阶段索引调制的OFDM实现方法和系统,专利号:ZL201910613750.9

5、陈振兴,张煜蓉等,基于三维信号插入降低OFDM系统峰均功率比的方法及系统,专利号:ZL201711106288.0

6、陈振兴,张煜蓉等,基于四维信号插入降低OFDM系统峰均功率比的方法及系统,专利号:ZL201711106287.6

7、陈振兴,薛伟等,一种基于16进制三维格子星座图映射的数字通信系统,专利号:ZL201710194502.6

8、陈振兴,李哲丰等,一种基于四维信号星座图映射与解映射的数字通信方法,专利号:ZL201710194376.4

9、陈振兴,刘嘉珩等,三维相干光正交频分复用系统峰均功率比降低方法和装置,专利号:ZL 201710194371.1

10、陈振兴,薛伟等,一种提高三维相干光正交频分复用频带利用率系统和方法,专利号:ZL 201710194365.6

11、陈振兴,刘嘉珩等,三维相干光正交频分复用系统峰均功率比降低装置,专利号:ZL201720316020.9

12、陈振兴,薛伟等,一种提高三维相干光正交频分复用频带利用率系统,专利号:ZL201720312473.4

13、陈振兴,欧阳丝等, 基于小波变换的高维正交时频空系统软件V1.0,登记号2026SR0210793.

14、王子昂,陈振兴, 基于四维索引调制正交频分复用的可见光通信软件V1.0,登记号2026SR0008896.

15、许靖怡,陈振兴,基于深度学习的四维信号OFDM索引调制系统软件V1.0,登记号2026SR0008880.

16、黄文东,陈振兴,基于球形译码的高维索引调制正交频分复用系统软件V1.0,登记号2024SR0532123.

17、黄智鹏,陈振兴,基于空时分组码的高维索引调制正交频分复用非正交多址接入系统软件V1.0,登记号2024SR0261351.

18、程菲,陈振兴,基于网格编码调制的高维索引调制正交频分复用系统软件V1.0,登记号2024SR0260804.

19、田清瑶,陈振兴,基于高维信号索引调制的正交频分复用软件V1.0,登记号2021SR1657250.

20、吴云涛,陈振兴,基于MIMO的四维索引调制正交频分复用系统软件V1.0,登记号2021SR1657249.

21、陈振兴,刘嘉珩,基于虚拟序列插入降低三维OFDM系统PAPR软件V1.0,登记号2019SR0883481.

22、张煜蓉,陈振兴,基于三维信号插入技术降低OFDM系统峰均功率比软件V1.0,登记号2019SR0883474.

23、陈振兴,张煜蓉,基于四维信号插入技术降低OFDM系统峰均功率比软件V1.0,登记号2019SR0883468.

 

指导学生获奖

1、校级优秀本科毕业论文多篇

2、湖北省大学生电子设计竞赛,一、二等奖多项

3、中国工程机器人大赛,一、二、三等奖多项

4、睿抗机器人开发者大赛,一、二等奖多项

5、大唐杯,一、二、三等奖多项

6、先进毕业班(071175班)


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