姓名:毛天奇 职称:副教授 导师类型:博导 团队名称:复杂环境科学探测中心 邮箱:maotq@bit.edu.cn |
主要研究领域为:
聚焦5G/6G无线通信物理层关键技术,包括调制解调、波形设计、信号处理等,具体包括:1.面向6G的通信感知一体化关键技术;2.AI/大模型赋能无线通信; 3.里德堡量子/太赫兹/无线光通信关键技术
2018年9月–2022年1月:清华大学 信息与通信工程 博士学位
2015年9月–2018年7月:清华大学 信息与通信工程 硕士学位
2011年9月–2015年7月:清华大学 电子信息科学与技术 学士学位
2024年1月–今:北京理工大学前沿交叉科学院 预聘副教授
2022年1月–2024年1月:北京航空航天大学 电子信息工程学院 博士后
发表国际学术论文50余篇,被引次数近1800次,3篇入选ESI高被引论文,1篇入选ESI热点论文;其中以第一/通讯作者在IEEE COMST、JSAC、TWC、TCOM、WCM、COMMAG等国际权威SCI期刊发表论文20篇,部分学术成果如下:
[1]徐正元,金显庆,毛天奇,王昭诚,室外可见光通信与智能交通.北京:人民邮电出版社,2019年.
[2]T. Mao, Q. Wang, Z. Wang, and S. Chen, “Novel index modulation techniques: A survey,” IEEE Commun. Surveys Tut., vol. 21, no. 1, pp. 315-348, 2019.(IF: 34.4, ESI高被引论文)
[3]T. Mao, et al., “Dual-mode index modulation aided OFDM,” IEEE Access, vol.5,pp.50-60,Feb. 2017.(IF:3.4,ESI高被引论文)
[4]T. Mao, Q. Wang, and Z. Wang, “Generalized dual-mode index modulation aided OFDM,” IEEE Commun. Lett., vol. 21, no. 4, pp. 761-764, Apr. 2017.(IF: 3.7, ESI高被引论文)
[5]F. Zhang, T. Mao*, R. Liu, Z. Han, S. Chen and Z. Wang*, “Cross-domain dual-functional OFDM waveform design for accurate sensing/positioning,” IEEE J. Sel. Areas Commun., early access.(Q1顶刊,IF: 13.8)
[6]T. Mao and Z. Wang, “Terahertz wireless communications with flexible index modulation aided pilot design”, IEEE J. Sel. Areas Commun., vol. 39, no. 6, pp. 1651-1662, Jun. 2021.(Q1顶刊,IF: 13.8)
[7]T. Mao, et al., “Index-modulation-aided terahertz communications with reconfigurable intelligent surface,” IEEE Trans. Wirel. Commun., vol. 23, no. 7, pp. 8059-8070, Jul. 2024.(Q1顶刊,IF: 8.9)
[8]G. Liu, T. Mao*, et al., “Pre-Chirp-Domain Index Modulation for Full-Diversity Affine Frequency Division Multiplexing towards 6G,” IEEE Trans. Wirel. Commun., Early Access, 2025. (Q1顶刊,IF: 8.9)
[9]T. Mao, et al., “Terahertz-band near-space commun-ications: From a physical-layer perspective,” IEEE Commun. Mag., vol. 62, no. 2, pp. 110-116, Feb. 2024.(Q1顶刊,IF: 8.3)
[10]T. Mao, et al., “Waveform design for joint sensing and communications in millimeter-wave and low terahertz bands,” IEEE Trans. Commun., Aug. 2022.(Q1顶刊,IF: 7.2)
[11]T. Mao, Q. Wang, and Z. Wang, “Spatial modulation for Terahertz communication systems with hardware impairments,” IEEE Trans. Veh. Technol., vol. 69, no. 4, pp. 4553-4557, Apr. 2020.(Q1顶刊,IF: 6.1)
[12]T. Mao, Q. Wang, M. Wen, and Z. Wang, “Secure single-input-multiple-output media-based modulation,” IEEE Trans. Veh. Technol., vol. 69, no. 4, pp. 4105-4117, Apr. 2020.(Q1顶刊,IF: 6.1)
[13]Z. Xiao, T. Mao*, Z. Han, and X. Xia, “Near space communications: A new regime in space-air-ground integrated networks, IEEE Wirel. Commun., vol. 29, no. 6, pp. 38-45, Dec. 2022.(Q1顶刊,IF: 10.9)
[14]F. Zhang, T. Mao*, and Z. Wang*, “Doppler-resilient design of CAZAC sequences for mmWave/THz sensing applications,” IEEE Trans. Veh. Technol., vol. 73, no. 2, pp. 2878-2883, Feb. 2024. (Q1顶刊,IF: 6.1)
[15]Z. Xiao, G. Liu, T. Mao*, et al., “Twin-layer RIS-aided differential index modulation dispensing with channel estimation,” IEEE Trans. Veh. Technol., vol. 73, no. 4, pp. 5947-5952, Apr. 2024. (Q1顶刊,IF: 6.1)
[16]T. Mao, Z. Wang, and Q. Wang,“Receiver design for SPAD-based VLC systems under Poisson–Gaussian mixed noise model,” Opt. Exp., vol. 25, no. 2, pp. 799-809, 2017.(IF: 3.2)
[17]T. Mao, R. Jiang, and R. Bai, “Optical dual-mode index modulation aided OFDM for visible light communications,” Opt. Commun., vol. 391, pp. 37-41, May 2017.(IF: 2.2)
《(英)移动通信》 32学时 通信工程专业核心课