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43CC5 杨堃

国家级青年人才,浙江海洋大学信息工程学院学术副院长,海洋通信实验室主任,无线信道与测量及陆基海洋通信领域,主持全球第一个海洋5G项目。

个人简介PPT



基本信息

办公电话:+86 15672491371 电子邮件:yangkun@zjou.edu.cn

通讯地址:浙江省舟山市定海区临城街道海大南路1 邮编:316022


教育背景

教育经历:

2008.05 2014.02:博士, 无线通信信道测量与建模博士, 挪威科技大学 (Norwegian University of Science and Technology), 挪威

2005-2007 双硕士学位 ,信息与通信系统硕士, 阿哥德大学 (Agder University), 挪威

2004-2005 信息与通信系统硕士, 武汉理工大学,中国武汉

2000-2004 电子通信系统学士, 武汉科技大学, 中国武汉


工作经历

2021.01-至今:教授,浙江省海洋大数据挖掘与应用重点实验室主任,海洋通信实验室负责人

工作单位:浙江海洋大学

研究方向:海洋宽带通信技术,海洋无线信道测量与建模

2014.03-2020.12创始人,工作单位:Super Radio AS, Oslo Norway

责任描述:提供专业的无线信道测量和海洋宽带通信解决方案

2016.01-2017.03博士后, 工作单位:法国IFSTTAR国立交通研究所,Prof. Marion BERBINEAU (research director)的无线通信组

责任描述:主要项目参与人,负责开发60 GHz 毫米波信道测量仪,并基于设备对无线电在不同的高铁环境进行测量和分析。

2012.10-2013.06 Project coordinator, 工作单位:Fugro Oceanor AS, Trondheim, Norway

责任描述:开发基于北斗卫星通信技术的海上浮标检测系统

2012.01-2012.04 访问学者, 工作单位:法国Eurecom工程师学院,Prof. David Gesbert (IEEE fellow)的无线通信组

责任描述:主要项目带头人,负责开发基于802.11nWifi海上测量方案,并基于该方案对无线电在不同的海上环境进行测量和分析。团队成员包括2Eurecom博士。

2011.06-2011.09 访问学者, 工作单位:南加州大学,Prof. Andreas Molisch (IEEE fellow)WiDes组学术交流

责任描述:测量数据分析及其信道建模

2008.05—2012.10 博士研究员, 工作单位:MARINTEK 和挪威科技大学

硬件环境:信道测量设备,wimax基站和移动设备, 多天线技术

责任描述:参与挪威国家重大科技项目“The MarCom project: Broadband at sea.”负责项目中的海上信道建模,对通信环境进行理论建模,并对其统计特性进行分析和仿真。在此基础上,搭建信道测量平台,对几个典型的海上信道环境进行测量,并对测量数据进行分析对信道模型进行修正和完善。项目合作单位包括25个挪威和国际公司以及研究机构共同合作,并由MARINTEK领导, 总价值3200万挪威克朗。

2007.08—2008.05 嵌入式系统工程师 , 工作单位:Witelcom AS
责任描述:主要负责wimax基站和CPE设备的核心开发。为wimax基站和cpe设计系统和配置网页,并设计网络,添加新的网络功能并对其进行测试和调试。同时基于openwrtMikrotik设计WIFI用于5G频段。

2006.10—2007.06 科研助理, 工作单位:阿哥德大学, Prof. Matthias Patzold教授的移动通信组

责任描述:主要负责设计并实施基于超正交空时网格编码的MIMO-OFDM系统,并在该系统的基础上测试天线间距,最大多普勒频移,信道延时等参数对系统误码率,误信率以及无帧率的影响。根据HIPERLAN/2标准,设计并测试基于超正交空时网格码的MIMO-OFDM系统。研究信道模型,并针对阴影信道模型提出新的Level-Crossing Rate, PDF of Fading intervals的计算方法




研究方向

海洋宽带通信技术,海洋无线信道测量与建模



团队成员

博士研究生:


硕士研究生:

徐贝柠

林京龙

施泽波

张硕

王雨

孟秋

程军玮

张书豪

王丹

武航

袁雅莹


Alumni

王雨硕

陈旭扬

曾毫

丁建军

张智鹏

伍健明

管恒超

卢逸涵



招生专业

农业信息化

科研项目

1、主持舟山市重大科技项目,“海洋5G终端和数字底座”。项目时间2024年至2026年,总经费500万。

2、参与浙江省科学技术厅2023年度第二批“尖兵”“领雁”研发攻关计划项目“深远海高海况网箱工程关键技术开发及应用”,项目时间2023年至2025年,总经费105万。

3、主持省属高校基本科研重点项目,“结合无线信道测量仪的高精度无线信道参数估计算法研究”。项目时间 2021年至2022年,总经费25万。

4、主持教育部协同育人项目, 项目时间2024年, 总经费20万。

5、主持“国家海外引才计划(青年项目)”,项目时间20222025年,总经费200万。

6、主持海洋通信实验室建设项目,项目时间2021年至2024年,总经费1000万。

7、主持引进人才启动经费项目,项目时间2021年至2025年,总经费200万。

8、Project      leaderBoard Chair ),主持挪威国家级重大科技项目“LTE, WIFI and 5G Massive MIMO Communications in Maritime      Propagation Environments MAMIME)”。项目合作单位包括 挪威科技大学, 挪威Agder大学等挪威3家顶级研究 5家挪威高新技术企业。项目时间 2016年至2019年,总经费1400万挪威克朗,由挪威研究理事会资助。

9、主持欧盟地平线中小企业创新卓越项目,Maritime 5G: Connect the sea to the digital world (Seal of      Excellence in H2020 SME instrument phase 1), 由挪威创新署资助50万挪威克朗, 2019-2020

10、项目负责人, 主持中国国国家自然科学青年基金,项目名称及编号:“适用于海洋环境下5G大规模MIMO通信信道模型研究”,项目时间2017年到2021年, 总经费28万元。

11、Project      partner, 挪威国家重大科技项目” Cooperative Human Activity Recognition and Localization for      Healthcare and WellbeingCareWell)”, 项目负责单位挪威Agder 大学。 项目时间2019 2022 年,总经费1800 万挪威克朗,由挪威研究理事会资助。

12、Project      partner, 参与欧盟EU H2020      lighthouse 重大科技项目“Roll2Rail”。项目合作单位包括Ifsttar Alstom DLR IKLAN等欧盟各大科研机构和公司。项目时间 2015年至2017年,总经费1600万欧元, 由欧盟地平线科研基金资助 EU Horizon 2020)。

13、Project      partner, 参与挪威国家重大科技项目” A Wireless In-Home Healthcare Monitoring System for Supporting      Independent Living of Elderlies (WiCare)”, 项目负责单位挪威Agder 大学。 项目时间2017 2022年,总经费1800 万挪威克朗,由挪威研究理事会资助。

14、Main project      partner 作为主要合作伙伴参加挪威国际家科技项目“A Wireless In-Home Monitoring System for People with      Healthcare Needs” 项目负责单位挪威Agder 大学。 项目时间2015年,总经费150 万挪威克朗。



教学工作

本科生课程:


研究生课程:《农业工程与信息技术案例》


论文/期刊

发表学术论文>66篇(含SCI论文>25篇),详见个人英文网站。部分代表性英文论文如下:

Selected Publications (Updated:2022-05)

Conference Publications:

1Shuo ZhangKun Yang*Beining XuJianming WuHao ZengJinglong Lin, “Maritime 5G channel properties along the ferry route at the N41 band,” 2024 5th International Conference on Electrical, Electronic Information and Communication Engineering (EEICE 2024), Xian, China, 2024.

2Jianjun Ding,Kun Yang*, Yupeng Liu , Jinglong Lin. “Ship Early Warning System Based on Nine Axis Sensors” 2023 10th InternationalForum on Electrical Engineering and Automation,2023.

3Jianming Wu , Kun Yang , Hao Zeng , Shuo Zhang , Jianjun Ding1 and Xue Jiang. “The Application of 5G Wireless Communication in Maritime Environment” the 5th International Conference on MASS ICMASS 2023.

4Yushuo Wang,Kun Yang*,Jianjun Ding,Xuyang Chen,Qiang Li,Tong Peng. “Design and Implementation of Martime 5G Communication System based on Software Defined Radio and Open Air Interface” 2023 IEEE International Conference on Unmanned Systems (ICUS),2023.

5Hao Zeng, Kun Yang*, Jianming Wu, Jianjun Ding, Chengyuan Wen, Xin Li. “LoRa Path-loss Model and Verification for Maritime Environment” 2023 IEEE International Conference on Unmanned Systems (ICUS),2023.

6Xuyang Chen , Kun Yang , Yushuo Wang , Jianjun Ding , Youzhen Zhang , Vidar Ringset. “Design of a high-speed SP16T switch for a TDM radio sounder” International Conference on Microwave and Millimeter Wave Technology (ICMMT,2023.

7Z. Zhang, T. Peng*, K. Yang and X. Li, "Trajectory Optimization and Retrieving Monitory System for UAV-assisted Offshore Maritime Communications," 2023 3rd International Conference on Electronic Information Engineering and Computer Science (EIECS), Changchun, China, 2023, pp. 1014-1019.

8C. Wang, X. Zhao, L. He, T. Peng and K. Yang, "Frequency Division Sparse Neural Network for CSI Feedback in Massive MIMO Systems," 2023 International Conference on Intelligent Communication and Networking (ICN), Changzhou, China, 2023, pp. 105-110.

9Kun Yang, Ning Zhou, Haoyu Zhang, Tong Peng*, Junyi Yu, Changzhen Li, Wei Chen. “Vehicle-to-Vehicle Radio Channel Characteristics for a Long-Distance Urban Congestion Scenario at 5.9 GHz” 2021 IEEE 4th International Conference on Electronic Information and Communication Technology, 2021.

10Changzhen Li, Wei Chen*, Luyao Du, Junyi Yu, Shoufeng Wang, Kun Yang. “Diffraction Loss Modeling for V2V Wireless Channel in Viaduct Scenarios at 5.9 GHz Band” 2021 IEEE 4th International Conference on Electronic Information and Communication Technology, 2021.

11Kun Yang, Ning Zhou, Terje Røste. “LTE massive MIMO (Pre-5G) test with an updated boat user terminal solution for land-to-boat scenarios in Oslo fjord” November 2020 IOP Conference Series Materials Science and Engineering, 2020.

12Hanyi Zou, Changzhen Li, Junyi Yu, Wei Chen*, Fuxing Chang, Kun Yang. “Impact of Metal Fences on V2V Channel in Suburban Intersection at 5.9 GHz” 2020 International Conference on Computer Information and Big Data Applications (CIBDA),2020.

13K. Yang*, Ning Zhou, Terje Røste*, Heiki Neskvern, John Eriksen. “LTE massive MIMO (Pre-5G) test for land-to-boat scenarios in Oslo fjord” Journal of Physics Conference Series, 2019.

14Changzhen Li, Tongcheng Fan, Junyi Yu, Wei Chen*, Li Fang, Kun Yang. “Worse than Rayleigh Fading of V2V Communications in Ramp with Soundproof Walls Scenario” Conference: 2019 5th International Conference on Transportation Information and Safety (ICTIS), 2019.

15Changzhen Li, Junyi Yu, Wei Chen*, Kun Yang, “Shadowing Correlation and A Novel Statistical Model for Inland River Radio Channel”, in Proceedings of the 53rd IEEE International Conference on Communications (IEEE ICC 2019), Shanghai, China, May 20-24. IEEE, 2019.

16Xuanhao Shu, Changzhen Li, Wei Chen, Junyi Yu, Kun Yang. “Performance Analysis of V2V Radio Channel under Typical Urban Intersection Scenario” 2018 IEEE International Conference on Communication Systems (ICCS), 2018.

17Kun Yang*, Ning Zhou*, Terje Røste*, Egil Eide, Torbjorn Ekman, Anne Mari Hasfjord, Junyi Yu, Fang Li and Wei Chen, “ Wifi measurement for the autonomous boat ’DRONE 1’ in Trondheimfjord,” The 1st International Conference on Maritime Autonomous Surface Ship (ICMASS 2018), Nov 2018.

18Kun Yang*, Ning Zhou*, Andreas F. Molisch, Terje Røste*, Egil Eide, Torbjorn Ekman, Junyi Yu,Fang Li and Wei Chen, “Propagation measurements of mobile radio channel over sea at 5.9 GHz,” 16th International Conference on Intelligent Transportation Systems Telecommunications (ITST), Oct 2018.

19Fang Li, Wei Chen, Ji Wang, Yishui Shui*, Kun Yang, Lida Xu, Junyi Yu and Changzhen Li, “Different Traffic Density Connectivity Probability Analysis in VANETs with Measured Data at 5.9 GHz,” 16th International Conference on Intelligent Transportation Systems Telecommunications (ITST), Oct 2018.

20F. X. Chang, K. Yang, Wei Chen, Changzheng Li, Junyi Yu,“Vehicle-to-Vehicle Channel Characteristics in Municipal Lake Scenarios at 5.9 GHz”, the 12th European Conference on Antennas and Propagation, Eucap2018, London, UK, April. 2018.

21Li C, Yu J, K. Yang, et al. “Impact of soundproof walls on V2V communication in urban viaduct scenarios at 5.9 GHz band ”, 2017 IEEE 28th Annual International Symposium on Personal, Indoor, and Mobile Radio Communications (PIMRC).

22Li Fang, Wei Chen, Yishui Shui, Lida Xu, Junyi Yu, Changzhen Li, Kun Yang. “5.9 GHz Vehicular channels comparisons between two traffic status for dense urban area” 2017 IEEE/CIC International Conference on Communications in China (ICCC), 2017.

23Divitha Seetharamdoo, Rafik Addaci, Vy Xuyen Pham, Christian Chagny, Kun Yang; Jean-Pierre Ghys and Marion Berbineau “Influence of Railway Environment on Antenna Performances at Mm-Wave Frequencies”, the 11th European Conference on Antennas and Propagation, Eucap2017, Paris, France, Mar. 2017.

24K. Yang, M. Berbneau, Jean-Pierre Ghys, Yann Cocheril, Divitha Seetharamdoo “Propagation Measurements With Regional Train at 60 GHz for Virtual Coupling application”, the 11th European Conference on Antennas and Propagation, Eucap2017, Paris, France, Mar. 2017.

25Yu J, Li C, K. Yang*, Chen W. “GRG-MAPE and PCC-MAPE based on Uncertainty-Mathematical Theory for Path-Loss Model Selection” Vehicular Technology Conference (VTC Spring), 2016 IEEE 83rd. IEEE, 2016.

26ZHING LONG, Junyi Yu, Kun Yang*, RAN ZHU. “Level Crossing Rate and Average Duration of Fades for TWDP Fading Channel” Fourth International Conference on Advances in Computing, Communication and Information Technology CCIT- 2016, 2016.

27Z.L. Jiang, J.Y. Yu, K. Yang* and W. Chen, "Experimental Multipath Delay Spread and Path Loss Analysis for the Indoor Environment at 5.9 GHz", in IEEE International Conference on Wireless Communications Signal Processing and Networking (WiSPNET) 2016, 23-25 March 2016.

28C.Z. Li, J.Y. Yu, K. Yang* and W. Chen, "Grey System Theory Application in Model Selection of Channel Modeling at 1.4 GHz", in IEEE International Conference on Wireless Communications Signal Processing and Networking (WiSPNET) 2016, 23-25 March 2016.

29K. Yang*, A. F. Molisch, T. Ekman*, T. Røste, “A Deterministic Round Earth Loss Model for Open-Sea Radio Propagation,” Proc. IEEE 77th Vehicular Technology Conference, VTC2013-spring. Dresden, Germany, June. 2013.

30T. Røste, K. Yang and F. Bekkadal, “Coastal Coverage for Maritime Broadband Communications”, Proc. OCEANS’13 MTS/IEEE Conference, OCEANS’13. Bergen, Norway, June. 2013.

31Kun Yang, Terje Roste, Fritz Bekkadal, Torbjörn Ekman. “Experimental multipath delay profile of mobile radio channels over sea at 2 GHz” Antennas and Propagation Conference (LAPC), 2012 Loughborough, 2012.

32K. Yang*, T. Røste, F. Bekkadal, K. Husby and O. Trandem, “Long-distance propagation measurements of mobile radio channel over sea at 2 GHz,” Proc. IEEE 74th Vehicular Technology Conference, VTC2011-Fall. San Francisco, United States, Sept. 2011.

33K. Yang*, T. Ekman, T. Røste, F. Bekkadal, “A quasi-deterministic path loss propagation model for the open sea environment,” Proc. Wireless Personal Multimedia Communications Symposium, WPMC2011. Brest, France, Oct. 2011.

34K. Yang, T. Røste, F. Bekkadal and T. Ekman, “Land-to-ship radio channel measurements over sea at 2 GHz,” Proc. IEEE International Conference on Wireless Communications, Networking and Mobile Computing, 2010, WiCOM2010. Chengdu, China, Sep. 2010

35K. Yang*, T. Røste, F. Bekkadal and T. Ekman, “Channel characterization including path loss and Doppler effects with sea reflections of mobile radio propagation over sea at 2 GHz,” Proc. Wireless Communications and Signal Processing, WCSP2010. Suzhou, China, Oct. 2010 and granted as the “Best Paper Award”.

36F. Bekkadal and K. Yang, “Novel Maritime Communications Technologies,” Proc. 10th Mediterranean Microwave Symposium, MMS'2010. Northern Cyprus, Aug. 2010.

37K. Yang*, T. Røste, F. Bekkadal and T. Ekman, “Channel characterization of mobile radio channel over sea at 2 GHz,” Proc. 10th Mediterranean Microwave Symposium, MMS'2010. Northern Cyprus, Aug. 2010.

38Neji Youssef, M. Pätzold, Kun Yang, “Approximate Theoretical Results for the Distribution of Lognormal Shadow Fading Intervals”, Proc. 4th IEEE International Symposium on Wireless Communication Systems, ISWCS 2007, Trondheim, Norway, Oct. 2007, pp. 204–208.

39Yihan LU, Xin Li, Hengchao Guan, K. Yang*, and Tong Peng. “Enhanced angle-of-arrival estimation via convolutional neural network-based MUSIC algorithm.” ,36 pages, Jun 2024. doi:10.1117/12.3033545.



Journal Publications:

1.Yihan Lu, Hengchao Guan, K. Yang*, Tong Peng, Chengyuan Wen, and Xin Li. “Improving the Accuracy of Direction of Arrival Estimation with Multiple Signal Inputs Using Deep Learning.” Sensors. vol. 24, 2971 pages, May 2024. doi:10.3390/s24102971.

2.K. Yang* and T. Røste, “Editorial: Maritime broadband communications and networking,” Front. Mar. Sci., vol. 10, p. 1336722, Nov. 2023, doi:10.3389/fmars.2023.1336722.

3.T. Røste, K. Yang*, and C. Wen, “Satellite to buoy IoT communications in the Arctic Ocean,” Frontiers in Marine Science, vol. 10, 2023, [Online]. Available: https://www.frontiersin.org/articles/10.3389/fmars.2023.1153798

4.F. Li, Y. Shui*, J. Liang, K. Yang, and J. Yu, Ship-to-ship maritime wireless channel modeling under various sea state conditions based on REL model, Frontiers in Marine Science, vol. 10, 2023, [Online]. Available: https://www.frontiersin.org/articles/10.3389/fmars.2023.1134286

5.X. Li and K. Yang, “Multi-Cluster-Based MIMO-OFDM Channel Modeling.” 2023. doi: 10.5772/intechopen.112190.

6.Li, C., Yu, J., Xue, J*., Chen, W*., Wang, S., & Yang, K. Maritime broadband communication: Wireless channel measurement and characteristic analysis for offshore waters., Journal of Marine Science and Engineering, 9(7), [783], 2021.

7.Jiahao Zhang, Kun Yang, Jin Meng, Wei Li. “Dual-Band Dual-Polarized Massive MIMO Array for Maritime Applications” IEEE Sensors Letters, 2021.

8.Fuxing Chang, Changzhen Li, Hongjiang Zheng, Junyi Yu, Kun Yang, Wei Chen*. “Measurement-based characteristics of V2V channel for the scenarios of two vehicles meeting” Physical Communication, 2021.

9.Changzhen Li, Shoufeng Wang, Junyi Yu, Wei Chen, Kun Yang. “Distance-dependent V2I wireless channel characteristics and performance in 5G small cell based on measurements” IET Communications, 2020.

10.Hanyi Zou, Changzhen Li, Junyi Yu, Wei Chen*, Fuxing Chang, Kun Yang. “Measurement-Based V2V Channel Characteristics at 5.9 GHz on Urban Crossroad” Journal of Physics Conference Series,2020

11.Changzhen Li, Junyi Yu, Wei Chen, Kehao Wang, Shoufeng Wang, Kun Yang, Xiaofeng Wu. “Measurement-Based Wireless Channel Analysis and Modeling for Shipping Environments” IET Microwaves Antennas & Propagation, 2020.

12.Junyi Yu, Wei Chen, Li Fang, Changzhen Li, Kun Yang, Yi Liu, Fuxing Chang. “Channel Measurement and Modeling of the Small-Scale Fading Characteristics for Urban Inland River Environment”IEEE Transactions on Wireless Communications, 2020.

13.Jiahao Zhang, K. Yang*, Egil Eide, Sen Yan, Guy A. E. Vandenbosch. “Simple Triple-Mode Dual-Polarized Dipole Antenna With Small Frequency Separation Ratio” IEEE Antennas and Wireless Propagation Letters, 2019.

14.Junyi Yu, Li Fang, Changzhen Li, Wei Chen*, Kehao Wang, K. Yang, Fuxing Chang, “Measurement-based V2V Radio Channel Analysis and Modeling for Bridge Scenarios at 5.9GHz” IET Communications, 2019.

15.Fuxing Chang, Wei Chen, Junyi Yu, K. Yang, Changzhen Li*.“Vehicle-to-Vehicle Propagation Channel Performance for Overtaking Cases Based on Measurements” IEEE Access, 2019.

16.Alireza Borhani*, Matthias Pätzold, K. Yang. “Time-Frequency Characteristics of In-Home Radio Channels Influenced by Activities of the Home Occupant” sensors, 2019.

17.K. Yang, A. F. Molisch, T. Ekman, T. Røste and M. Berbneau,“A Round Earth Loss Model and Small-scale Channel Properties for Open-Sea Radio Propagation,” IEEE Trans on vehicle Technology, 2019.

18.Li Fang, Wei Chen, Yishui Shui, Ji Wang, Kun Yang, Lida Xu, Junyi Yu, Changzhen Li. “Connectivity probability analysis of VANETs at different traffic densities using measured data at 5.9 GHz” Physical Communication, 2019.

19.ChangzhenLi, Junyi Yu, Wei Chen, Kehao Wang, Kun Yang, “Measurements and Analysis of Vehicular Radio Channels in Inland Lake Bridge Area”, IET Microwaves Antennas& Propagation, 2019.

20.Li C, K. Yang, Yu J, Fang Li, Yishui shui, Fuxing Chang, Wei Chen* . “V2V Radio Channel Performance Based on Measurements in Ramp Scenarios at 5.9 GHz”. IEEE Access, 2018, 6: 7503-7514.

21.Shui Y, Li F, Wei Chen*, C. F. Xin, K. Yang, Junyi Yu. “Vehicle-to-Vehicle Radio Channel Characteristics for Congestion Scenario in Dense Urban Region at 5.9 GHz”, in International Journal of Antennas and Propagation, 2018.

22.LI F, CHEN W, SHUI Y, C. Z. Li, K. Yang, Junyi Yu* .“5.9 GHz Vehicular Channels Comparisons Between Two Traffic Status for Dense Urban Area”, China Communications, 2018.

23.Li C, Yu J, Wei Chen, K. Yang, F. Li, Y. Shui. “V2V Radio Channel Properties at in ramp scenarios and Ramp on Urban Viaduct at 5.9 GHz”, IET Communications, 2018,vol. 12, no. 17, pp. 2198-2205.

24.Junyi Yu, Wei Chen, Kun Yang*, Changzhen Li, Fang Li and Yishui Shui, " Path Loss Channel Model for Inland River Radio Propagation at 1.4 GHz", International Journal of Antennas and Propagation, vol. 2017, Article ID 5853724, 15 pages, 2017. doi:10.1155/2017/5853724.

25.M. Pätzold and K. Yang, “An Exact Solution for the Level-Crossing Rate of Shadow Fading Processes Modelled by Using the Sum-of-Sinusoids Principle”, Wireless Personal Communications, Special Issue, published online, 2010.



专著/译著

英文著作(含章节):

Multi-Cluster-Based MIMO-OFDM Channel Modeling

中文著作:


专利

1.一种射频高速切换控制电路及装置,授权号:CN 114050879B

2. 一种基于卫星通信的海洋通信基站浮标,授权号: CN 115817721B3.

3.一种射频高速切换控制电路及装置,美国专利授权号: US 12081280 B2.



获奖与荣誉

重要奖项

2023年,项目《智慧海联》获国家教育部科技部海外创业人才春晖杯优胜奖

2023年,欧盟商业2023北欧最佳海洋信道测量解决方案团队

2023年,舟山“海纳计划”领军型团队

2022年,舟山市海洋科技领军型创新领军团队

2022年,SPT16高速射频电子切换器”、“高精度无线测量技术”、“海洋5G终端”成果入选浙江创新馆

2021年, 第四届·中国舟山全球海洋经济创业大赛银奖

2021年,浙江好项目优胜奖

2020年,全球互联网双创大赛乌镇赛区一等奖

2020年,全球海洋人才创新创业大赛三等奖

2019年,提交欧盟地平线H2020 SME instrument项目获得卓越项目称号(Seal of Excellence

2019年,深圳鹏城实验室特邀讲者

2013年度第五批厦门市高层次人才 “双百人才计划”

2011年度国家教育部科技部海外创业人才 春晖杯优胜奖

2010年度挪威科技大学人电子通信系优秀博士代表(IET-ambassadør 2010

2010IEEE无线通信及信号处理国际会议中获最佳论文奖(Best paper award

2007年度武汉理工大学"优秀硕士论文",



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2023年,杭州电子学会理事

2022年,第三届IEEE地质、测绘与遥感国际学术会议大会主席

2021年,第三届环境建模仿真专业委员会委员

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2021年,浙江省海外引才计划评审专家

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2021年,浙海大学术委员会委员

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IEEE Transactions on Vehicular Technology 杂志评审

IEEE Communications Magazine 杂志评审

IEEE Vehicular Technology Magazine 杂志评审

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European Conference on Networks and Communications EuCNC)会议评审

IEEE Vehicular Technology conference VTC)会议评审


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