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姓名:杨晨 职称:助理教授 导师类型:硕导 团队名称:太赫兹科学应用中心 所属学域:海洋科技学域 邮箱:yangchenzh@bit.edu.cn |
主要研究领域为:毫米波太赫兹器件设计;5G/6G通信与感知系统;AI赋能电磁技术。
欢迎新一代电子信息专业的学生加入课题组,有科研论文、项目经验、和相关竞赛优先。欢迎有志于从事科研的优秀本科生联系,可参与科研项目、学科竞赛并推荐至合作单位深造。
2019年09月–2023年10月: 香港城市大学大学电子工程专业 博士学位
2016年09月–2019年06月:兰州大学通信与信息系统专业 硕士学位
2012年09月–2016年06月:北京理工大学信息工程(实)专业 学士学位
2024年11月– 今 :北京理工大学(珠海)海洋科技学域 预聘助理教授, 珠海市太赫兹智能感知与无线通讯系统重点实验室副主任
2023年10月–2024年10月 : 香港城市大学/太赫兹及毫米波国家重点实验室 博士后
学术论文(时间由近及远):
[1] Z. Qin, C. Yang*, W. Hu, B. Li, G. Lu, D. Lin, T. Li, and L. Guan, “A coplanar tri-polarized decoupled antenna for multi-input–multi-output applications,” in Proc. IEEE International Workshop on Electromagnetics: Applications and Student Innovation Competition (iWEM), Hong Kong, China, 2025.
[2] L. Guan, C. Yang*, W. Hu, G. Lu, X. Lai, J. Xiang, and Z. Qin, “A wideband three-layered octagon dielectric resonator antenna based on the superformula,” in Proc. International Conference on Microwave and Millimeter Wave Technology (ICMMT), Xi’an, China, 2025.
[3] C. Yang, K. W. Leung, and K. Lu, “A compact antenna module with three coplanar polarizations for multi-input–multi-output applications,” IEEE Transactions on Antennas and Propagation, vol. 72, no. 4, pp. 3044–3054, Apr. 2024.
[4] C. Yang, K. W. Leung, Q. Wang, and L. Chen, “Self-decoupled U-slot patch antenna based on field valleys distribution,” in Proc. IEEE International Workshop on Antenna Technology (iWAT), Sendai, Japan, pp. 1–3, 2024.
[5] C. Yang and K. W. Leung, “A six-port decoupled antenna using a dielectric decoupler for compact MIMO systems,” in Proc. IEEE International Symposium on Antennas and Propagation and INC/USNC-URSI Radio Science Meeting (AP-S/INC-USNC-URSI), Florence, Italy, 2024.
[6] C. Yang and K. W. Leung, “3-D-printed wideband circularly polarized MIMO dielectric resonator antenna,” IEEE Transactions on Antennas and Propagation, vol. 71, no. 7, pp. 5675–5683, Jul. 2023.
[7] C. Yang, Q. Wang, L. Chen, and K. W. Leung, “Substrate-integrated dielectric resonator (SIDR) MIMO antenna for millimeter-wave applications,” in Proc. IEEE Conference on Antenna Measurements and Applications (CAMA), Genoa, Italy, pp. 1–3, 2023.
[8] C. Yang, K. W. Leung, Q. Wang, and L. Chen, “Compact multiple-port decoupled antennas for MIMO applications,” in Proc. IEEE 11th Asia-Pacific Conference on Antennas and Propagation (APCAP), Guangzhou, China, pp. 1–3, 2023.
[9] C. Yang, K. Lu, and K. W. Leung, “Dielectric decoupler for compact MIMO antenna systems,” IEEE Transactions on Antennas and Propagation, vol. 70, no. 8, pp. 6444–6454, Aug. 2022.
[10] C. Yang, K. W. Leung, and Z. Zhang, “A new decoupling method based on dielectric loading for MIMO applications,” in Proc. International Conference on Microwave and Millimeter Wave Technology (ICMMT), Harbin, China, pp. 1–3, 2022.
[11] C. Yang, Y. Xiao, and K. W. Leung, “A 3D-printed wideband multilayered inverted truncated conical dielectric resonator antenna with serrated ground,” in Proc. Cross Strait Radio Science and Wireless Technology Conference (CSRSWTC), Fuzhou, China, pp. 1–3, 2020.
[12] C. Yang, Y. Xiao, and K. W. Leung, “A 3D-printed wideband multilayered cylindrical dielectric resonator antenna with air layers,” in Proc. IEEE Asia-Pacific Microwave Conference (APMC), Hong Kong, China, pp. 561–563, 2020.
[13] C. Yang and K. W. Leung, “Wideband multilayered truncated cone dielectric resonator antenna based on 3D printing technology,” in Proc. National Conference on Microwave and Millimeter Waves (NCMMW), Shanghai, China, pp. 281–283, 2020. (Best Student Paper Award).
[14] G. Gao, C. Yang, B. Hu, S. Wang, and R. Zhang, “Quasi-Cassegrain metasurface antenna with shielded vias and wide bandwidth,” IET Microwaves, Antennas & Propagation, vol. 13, no. 10, pp. 1678–1683, 2019.
[15] G. P. Gao, C. Yang, B. Hu, R. F. Zhang, and S. F. Wang, “A wide-bandwidth wearable all-textile PIFA with dual resonance modes for 5 GHz WLAN applications,” IEEE Transactions on Antennas and Propagation, vol. 67, no. 6, pp. 4206–4211, Jun. 2019.
[16] G. P. Gao, C. Yang, B. Hu, R. F. Zhang, and S. F. Wang, “A wearable PIFA with an all-textile metasurface for 5 GHz WBAN applications,” IEEE Antennas and Wireless Propagation Letters, vol. 18, no. 2, pp. 288–292, Feb. 2019.
[17] G. P. Gao, C. Yang, B. Hu, S. F. Wang, and R. F. Zhang, “Design of a high-gain and low-profile quasi-Cassegrain antenna based on metasurfaces,” IEEE Antennas and Wireless Propagation Letters, vol. 17, no. 8, pp. 1435–1439, Aug. 2018.
专利:
[1] K. W. Leung, C. Yang, and K. Lu, “Multi-Polarization Antenna and Multi-Polarization Antenna Array,” U.S. Patent US 12095178 B2, Sep. 17, 2024. (US)
[2] 梁国华,杨晨,陆凯,“多极化天线和多极化天线阵列,” 中国发明专利,ZL 2023 1 0470478.X,2025年10月17日授权。(中国)
[3] 杨晨,刘思语,胡伟东,何芒,李斌,谢鑫新,卢桂萍,秦梓丹,李成超,蒲清鑫,管乐健,崔亮亮,“一种基于高斯回归过程的人工智能辅助天线设计方法,” 中国发明专利,ZL 2025 1 1343892.X,2025年11月21日授权。(中国)
[4] K. W. Leung, C. Yang, and K. Lu, “Antenna,” U.S. Patent US 12542349 B2, Feb. 3, 2026. (US)
[5] K. W. Leung and C. Yang, “Antenna and Method of Making Antenna Part,” U.S. Patent US 12548910 B2, Feb. 10, 2026. (US)
标准及白皮书:
[1] 中国通信学会, 《移动通信低损耗环保型天线罩技术要求及检验方法》, 团体标准 T/ZGTXXH 108—2025, 2025. (参编)
[2] 中国通信学会, 《地空联合覆盖天线阵列技术要求和测试方法》, 团体标准 T/ZGTXXH 107—2025, 2025. (参编)
[3] 未来移动通信论坛, 《6G近场技术白皮书(10.0版)》, 2024全球6G技术大会, 2024. (参编)
[4] 未来移动通信论坛, 《6G近场技术白皮书2.0(11.0版)》, 2025全球6G技术与产业生态大会, 2025. (参编)
1.《电路分析基础》本科
2.《新一代通信感知系统理论、技术及应用》研究生
3.《人工智能驱动的电磁器件设计》研究生
4. 北京理工大学(珠海)第一届青年教师教学比赛二等奖
5. 第二批北京理工大学“研究生人工智能赋能课程”建设项目
6. 指导学生立项2025年广东省科技创新战略专项资金(大学生科技创新培育)项目;立项2026年大学生创新创业训练计划国家级1项、省级1项;获得2025年全国大学生电子设计竞赛广东赛区一等奖;获得十八届“挑战杯”广东省三等奖;获得The 26th IEEE SZ/HK AP/MTT Postgraduate Conference的Best presentation Award;
1.广东省科协青年科技人才培育计划
2.全国微波毫米波会议优秀学生论文奖
1.IEEE高级会员;中国通信学会高级会员;中国电子学会会员;
2.中国电子学会2026第五届电磁频谱学术大会编委;《中国通信学会学术论文集》编委
3.国际期刊IEEE TAP、IEEE AWPL、Scientific Reports、IEEE OJAP审稿专家
4.2023年青岛ICMMT国际会议Session Chair;2025年香港iWEM国际会议Session Chair/TPC member;2025年广州CSRSWTC国际会议Publicity Chairs/TPC member;2026年深圳RFAT国际会议Session Chair;2026年北京ICMMC国际会议Conference Secretariats/TPC member;2026年成都ISAP国际会议Session Chair。