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刘琦博士 副教授 | 硕士生导师 |
学位:博士 职务: 研究方向:物联网技术/射频识别技术 职称:副教授 毕业院校:浙江大学 办公电话:13656718136 地址:raybet下赌注 第三教学楼521 邮箱:liuqi67@hdu.edu.cn 邮编:310018 |
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刘琦博士 副教授 | 硕士生导师 |
学位:博士 职务: 研究方向:物联网技术/射频识别技术 职称:副教授 毕业院校:浙江大学 办公电话:13656718136 地址:raybet下赌注 第三教学楼521 邮箱:liuqi67@hdu.edu.cn 邮编:310018 |
刘琦 副教授,硕士生导师 工作单位 raybet下赌注
电子信息学院 微纳器件与微系统团队 联系方式 13656718136 liuqi67@hdu.edu.cn 联系地址 raybet下赌注 下沙校区第三教学楼521 研究方向 无源物联网(Passive IoT);新体制天线设计;可穿戴设备
纵向科研
横向科研
论文
1. Q. Liu, S. Zhong, Y. Yu, W. -S. Zhao and G. Wang, Platform-Tolerant Nested-Slot RFID Tag Antenna Based on Jigsaw-Shaped Metasurface, 2022 IEEE Antennas and Wireless Propagation Letters, 21(5):943-947. 2. Q. Liu, Y. Yu, D. -W. Wang and G. Wang, An RFID-Based Wireless Multistate Controller with Quasi-Isotropic Radiation Pattern for Remote Control Applications, 2021 IEEE Antennas and Wireless Propagation Letters, 20(10):2023-2027. 3. Qi Liu, Yu-Feng Yu, Wen-Sheng Zhao, Hui Li, Microfluidic temperature sensor based on temperature-dependent dielectric property of liquid, 2020 Chin. Phys. B 29 010701. 4. Q. Liu, W. Zhao and Y. Yu, RFID‐based bidirectional wireless rollover sensor for intelligent wheelchair, 2020 Microwave and Optical Technology Letters, 63(2):504-509. 5. Q. Liu, W. Zhao and Y. Yu, Broadband T‐bar fed slot antenna array with stable horizontally polarized omnidirectional radiation, 2020 International Journal of RF and Microwave Computer-Aided Engineering, 30(11): e22427. 6. Q. Liu, H. Li, Y. F. Yu, W. S. Zhao, S. Zhang, A Novel Finger-Controlled Passive RFID Tag Design for Human-Machine Interaction, 2019 Sensors (Basel), 19(23):5125. 7. Q. Liu, H. Li and Y. F. Yu, A Versatile Flexible UHF RFID Tag for Glass Bottle Labelling in Self-Service Stores. 2018 IEEE Access, 6:59065-59073. 8. H. Y. Gan, W. S. Zhao, Q. Liu, et al., et al. Differential Microwave Microfluidic Sensor Based on Microstrip Complementary Split-Ring Resonator (MCSRR) Structure. 2020 IEEE Sensors Journal 20 (11):5876-5884. 9. B. X.Wang, W. S. Zhao, D. W. Wang, W. J. Wu, Q. Liu and G. F.Wang, Sensitivity Optimization of Differential Microwave Sensors for Microfluidic Applications. 2021 Sensors and Actuators A Physical 330(February 2):112866. 10. W. -S. Zhao, B. -X. Wang, D. -W. Wang, B. You, Q. Liu and G. Wang, Swarm Intelligence Algorithm-Based Optimal Design of Microwave Microfluidic Sensors, 2022 IEEE Transactions on Industrial Electronics, 69(2):2077-2087. 11. H.Y. Gan, W.S. Zhao, D.W. Wang, J. Wang, Q. Liu, et al., High-Q active microwave sensor based on microstrip complementary split-ring resonator (MCSRR) structure for dielectric characterization, 2021 ACES Journal, 36(7):922-927. 12. L. C. Fan, W. S. Zhao, D. W. Wang, Q. Liu, S. Chen and G. Wang, An Ultrahigh Sensitivity Microwave Sensor for Microfluidic Applications, 2020 IEEE Microwave and Wireless Components Letters, 30(12):1201-1204. 13. W. S. Zhao, H. Y. Gan, L. He, Q. Liu, et al., Microwave Planar Sensors for Fully Characterizing Magneto-Dielectric Materials, 2020 IEEE Access, 8:41985-41999. 14. L. C. Fan, W. S. Zhao, H. Y. Gan, L. He, Q. Liu, et al., A high-Q active substrate integrated waveguide-based sensor for fully characterizing magneto-dielectric (MD) materials, 2020 Sensors and Actuators A: Physical, 301:111778. 著作
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