郭慶毅,男,1990年出生于福建龍巖,博士,深圳大學(xué)電子與信息工程學(xué)院助理教授、碩士生導(dǎo)師,深圳市海外高層次人才(孔雀計(jì)劃C類)。本科和碩士畢業(yè)于華南理工大學(xué),博士畢業(yè)于香港城市大學(xué)。發(fā)表論文20多篇(以第一作者身份發(fā)表多篇權(quán)威期刊IEEE Transactions on Antennas and Propagation),申請(qǐng)中國(guó)專利4項(xiàng),美國(guó)專利1項(xiàng)。獲2020 海峽兩岸無(wú)線技術(shù)與科學(xué)會(huì)議最佳論文以及第十七屆IEEE港澳博士AP/MTT學(xué)術(shù)研討會(huì)第一名等榮譽(yù)。擔(dān)任《IEEE Transactions on Antennas and Propagation》、《IEEE Antennas and Wireless Propagation Letters》等國(guó)際權(quán)威期刊的審稿人。主持深圳大學(xué)高水平大學(xué)二期建設(shè)項(xiàng)目等研究課題。
E-mail:eeqyguo@szu.edu.cn
辦公室:致騰樓610
工作經(jīng)歷
2021.05–至今,深圳大學(xué),電子與信息工程學(xué)院,助理教授
2020.02–2021.04,香港城市大學(xué),電氣工程系&毫米波國(guó)家重點(diǎn)實(shí)驗(yàn)室,博士后
2016.05–2016.08,香港城市大學(xué)深圳研究院,研究助理
教育經(jīng)歷
2016.09–2020.02,香港城市大學(xué),電氣工程,哲學(xué)博士
2013.09–2016.04,華南理工大學(xué),電子與通信工程,工程碩士
2009.09–2013.06,華南理工大學(xué),信息工程,工學(xué)學(xué)士
研究方向
毫米波太赫茲天線,超材料結(jié)構(gòu),多波束/可重構(gòu)天線,極化器,透鏡天線,介質(zhì)諧振器天線,集成多功能的射頻模塊,包括濾波環(huán)形器,濾波功率分配器,以及LTCC電路, 3D打印天線等。
碩士招生
學(xué)術(shù)碩士:電子科學(xué)與技術(shù)
專業(yè)碩士:電子與通信工程(2021年9月入學(xué)還有名額)
(另有研究助理和博后職位,歡迎在校學(xué)生或者畢業(yè)博士聯(lián)系我,加入課題組,做相關(guān)感興趣的研究課題。)
主持項(xiàng)目
u 高水平大學(xué)二期建設(shè)項(xiàng)目,項(xiàng)目號(hào)000002111607,5萬(wàn),2021.07–2021.12,主持。
u 國(guó)家自然科學(xué)基金項(xiàng)目,基于相變材料的6G太赫茲波束可重構(gòu)天線研究,核心參與,在研
u 香港特別行政區(qū)研究資助委員會(huì)合作研究基金項(xiàng)目(CRF),CityU C1020-19E,應(yīng)用于毫米波太赫茲頻段的高分辨率機(jī)械臂天線測(cè)試系統(tǒng),2020-01至2023-02,HK$ 4,103,932,核心參與,在研。
u 香港大學(xué)教育資助委員會(huì)優(yōu)配研究金(GRF),CityU 11218318,寬帶高增益毫米波平板天線調(diào)研,2018-07-01至2020-12-31,HK$ 499,000,核心參與,在研。
部分論文
Q. -Y. Guo and H. Wong, "155 GHz Dual-Polarized Fabry–Perot Cavity Antenna Using LTCC-Based Feeding Source and Phase-Shifting Surface," in IEEE Transactions on Antennas and Propagation, vol. 69, no. 4, pp. 2347-2352, April 2021.
Q.-Y. Guo, Q. W. Lin and H. Wong, "A high gain millimeter-wave circularly-polarized fabry-perot antenna using PRS integrated polarizer," in IEEE Transactions on Antennas and Propagation, vol. 69, no. 2, pp. 1179-1183, Feb. 2021.
Q.-Y. Guo and H. Wong, “A millimeter-wave fabry-pérot cavity antenna using fresnel zone plate integrated PRS,” IEEE Transactions on Antennas and Propagation, vol. 68, no. 1, pp. 564-568, Jan. 2020.
Q.-Y. Guo and H. Wong, “Wideband and high gain fabry-Perot cavity antenna with switched beams for millimeter-wave applications,” IEEE Transactions on Antennas and Propagation, vol.67, no.7, pp.4339-4347, July 2019.
Q.-Y. Guo, Hang Wong, 2021. A dual-polarized Fabry–Pérot antenna with high-gain and wide bandwidth for millimeter-wave applications. Frontiers of Information Technology & Electronic Engineering, 22(4):599-608. https://doi.org/10.1631/FITEE.2000541
Q. -Y. Guo, X. Y. Zhang, J, X. Xu, Y. C. Li and Q. Xue, “Bandpass class-F power amplifier based on multifunction hybrid cavity–microstrip Filter”, IEEE Trans. Circuits Syst. II, Express Briefs, vol.64, no.7, pp.742-746, July. 2017.
Q. -Y. Guo, X. Y. Zhang and L. Gao, “Novel compact planar crossover with bandpass response based on cross-shaped resonator”, IEEE Trans. Compon., Packag. Manuf. Technol, vol.7, no.12, pp.2018-2026, Dec. 2017.
Q.-Y. Guo, X. Y. Zhang; L. Gao; Y. C. Li and J.-X. Chen, “Microwave and millimeter-wave LTCC filters using discriminating coupling for mode suppression”, IEEE Trans. Compon., Packag. Manuf. Technol, vol.6, no.2, pp.272-281, Feb. 2016.
X. Y. Zhang, Q. Y. Guo, K. X. Wang, B. J. Hu and H. L. Zhang, “Compact filtering crossover using stub-loaded ring resonator,” IEEE Microw. Wireless Compon. Lett., vol.24, no.5, pp.327-329, May. 2014.
EI Papers
[1] Q.-Y. Guo, Q. W. Lin and H. Wong, "Directive beam radiation by a fresnel zone plate integrated partially reflective surface for millimeter-wave applications," 2020 14th European Conference on Antennas and Propagation (EuCAP), Copenhagen, Denmark, 2020.
[2] Q.-Y. Guo, H. Wong, Q. W. Lin, A. Crunteanu, L. Huitema and Z. H. Wu, "A MMW reconfigurable antenna for sensing applications," 2019 IEEE Asia-Pacific Microwave Conference (APMC), Singapore, Singapore, 2019.
[3] H. Wong, Q. -Y. Guo, A. Crunteaun, L. Huitema, “A 30 GHz pattern reconfigurable antenna using phase-change material”, 2019 International Conference on Microwave and Millimeter Wave Technology, pp. 1-3, Jun. 2019.
[4] Q. -Y. Guo and Hang Wong, “A stepped-ring fabry perot cavity antenna for millimeter wave applications”, 2019 IEEE International Symposium on Antennas and Propagation, pp. 1-3, Sept. 07, 2019.
[5] Q. -Y. Guo and Hang Wong, “A fabry-pérot cavity antenna for millimeter-wave application”, 2019 The Cross Strait Quad-Regional Radio Science and Wireless Technology Conference (CSQRWC), pp. 1-3, Jul. 2019.
[6] H. Wong, Q. -Y. Guo, A. Crunteaun, L. Huitema, “A MMW reconfigurable antenna with switched beams using functional materials”, 13th European Conference on Antennas and Propagation (EuCAP 2019), 2019, pp. 1-3, Apr. 2019.
[7] H. Wong, Q. -Y. Guo, Q.-W. Lin, A. Crunteaun, L. Huitema, “Pattern reconfigurable antenna using a functional material for MMW application”, 2018 IEEE Conference on Antenna Measurements & Applications (CAMA), pp. 1-3, Sep. 2018.
[8] Q. -Y. Guo, Y. Cai and X. Y. Zhang, "Compact filtering crossover based on cross-shaped resonator," 2017 International Applied Computational Electromagnetics Society Symposium (ACES), Suzhou, pp. 1-2, 2017.
[9] X. Y. Zhang and Q. -Y. Guo, “Miniaturized LTCC Bandpass Filter with Extended Stopband”, IEEE
Asia-Pacific Microwave Conference, PP. 1-3, 2015.
[10] X. Y. Zhang, Q. -Y. Guo, and X. L. Zhao, “Compact filtering crossover for crossing signals with different frequencies”, Asia-Pacific Conference on Antennas and Propagation, PP. 157-158, 2015.
[11] Q. -Y. Guo, X. Y. Zhang, L. Gao and S. Y. Zheng, “Novel millimeter-wave bandpass filter using discriminating coupling for fundamental mode suppression”, Proceedings of 3rd Asia-Pacific Conference on Antennas and Propagation, pp. 1203-1205, December 18, 2014.
[12] X. Y. Zhang, X. Dai and Q. -Y. Guo, “Wide-stopband LTCC filter using discriminating coupling”, IEEE International Workshop on Electromagnetics, pp. 129-130, November 20, 2014.
[13] X. Y. Zhang, L. Gao, Q. -Y. Guo and Q. Xue, “Discriminating coupling and its application to bandpass filters”, 2013 IEEE International Workshop on Electromagnetics, pp. 42-45, 2013
Patents
[1] 章秀銀,郭慶毅,薛狄,趙小蘭,一種具有寬阻帶高隔離特性的小型化雙工器,發(fā)明專利:CN105048029A,14/05/2019。
[2] 章秀銀,郭慶毅,張垚,趙小蘭,基于頻率選擇性耦合抑制三五次諧波的LTCC濾波器,發(fā)明專利:CN105337009A,09/04/2019。
[3] 潘偉鏘,郭慶毅,徐金旭,一種基于頻率選擇性耦合的電調(diào)共模抑制濾波器, 發(fā)明專利: CN104701591A, 授權(quán)日期: 19/04/2017。
[4] 章秀銀,徐金旭,郭慶毅,葉曉鋒,趙小蘭, 一種采用頻率選擇性耦合來(lái)抑制基波的毫米波濾波器, 發(fā)明專利: CN104241743A, 授權(quán)日期: 24/12/2014。
[5] 章秀銀,郭慶毅,薛狄,趙小蘭,一種具有濾波功能的小型化交叉連接器, 實(shí)用新型:CN204947051U,06/01/2016。