基本介紹
- 中文名:錢慧珍
- 畢業院校:電子科技大學
- 學位/學歷:博士
- 職業:教師
- 專業方向:射頻、微波、毫米波
- 任職院校:電子科學大學電子科學與工程學院(示範性微電子學院)
個人經歷,教育經歷,工作經歷,社會兼職,研究方向,學術成果,榮譽獎項,
個人經歷
教育經歷
2016.9-2018.12, 電子科技大學,電子與信息,工學博士學位
2016.9-2018.12,電子科技大學,電子與信息,博士學位
2004.9-2008.6,電子科技大學,電子信息工程,工學學士學位
2008.9-2011.6,電子科技大學,電路與系統,工學碩士學位
工作經歷
2017.12-至今,電子科技大學電子科學與技術學院(示範性微電子學院),專職科研
2016.2-2017.11,電子科技大學微電子與固體電子學院,專職科研
2013.8-2015.10,代爾夫特理工大學,Research Associate
2013.6-2013.12,成都芯源系統有限公司,工程師
2011.7-2012.12,成都芯源系統有限公司,工程師
社會兼職
兼任 IEEE TMTT、IEEE TCAS-I、IEEE MWCL、IEEE TVLSI等期刊審稿人,兼任IEEE國際無線會議(IWS)、IEEE ISAP等國際會議技術委員會委員。
研究方向
CMOS全集成數字發射機,數字功率放大器,射頻/微波/毫米波/THz積體電路與系統,片上智慧型感知相控陣無線傳輸系統,一體化可重構無源積體電路與系統等
學術成果
代表性論文:
Journal Paper
J1H. Qian, B. Zhang, and X. Luo, “High resolution wideband phase shifter with current limited vector-sum”,IEEE Trans. Circuits and Systems—I: Regular Papers, vol. 66, no. 2, pp. 820–833, Feb. 2019.
J2H. Qian, J. O. Liang, and X. Luo, “Wideband digital power amplifiers with efficiency improvement using 40-nm LP CMOS technology,”IEEE Trans. Microw. Theory Tech., vol. 64, no. 3, pp. 675–687, Mar. 2016.(IEEE TMTT Popular Article Ranking No.1, Apr. 2016)
J3H. Qianand X. Luo, “Compact 6.5-28.5 GHz on-chip balun with enhanced inband balance responses,”IEEE Microwave Wireless Compon. Lett., vol. 26, no. 12, pp. 993–995, Dec. 2016. (IEEE MWCL Popular Article Ranking No.1, Dec. 2016)
J4 X. Luo, B. Yang, andH. Qian, “Adaptive synthesis for resonator-coupled filters based on particle swarm optimization,”IEEE Trans. Microw. Theory Tech., vol. 67, no. 2, pp. 712–725, Feb. 2019.
J5Y. Shu,H. Qian, and X. Luo, “A 169.6 GHz low phase noise and wideband hybrid mode-switching push-push oscillator,”IEEE Trans. Microw. Theory Tech., vol. 67, no. 7, pp. 2769–2781, Jul. 2019.
J6 Z. Deng,H. Qian, and X. Luo, “Tunable quasi-circulator with isolation enhancement using compact fully-reconfigurable 180° hybrid for full-duplex transceiver,”IEEE Trans. Circuits and Systems—I: Regular Papers, vol. 66, no. 8, pp. 2949–2962, Aug. 2019.
J7J. Zhou,H. Qian, and X. Luo, “Compact wideband phase shifter using microstrip self-coupled line and broadside-coupled microstrip/CPW for multiphase feed-network,”IEEE Microwave Wireless Compon. Lett., vol. 27, no. 9, pp. 791–793, Sep. 2017. (IEEE MWCL Popular Article Ranking No.1, Sep. 2017)
J8Z. Deng, Z. Tian,H. Qian, and Xun Luo, “A metamorphosed roadway:dual-band variable-attenuation notch filters,”IEEE Microwave Mag., vol. 19, no. 2, pp. 70-76, Mar. 2018 (invited paper).
J9 T. Wang, X. Liu, C. Han, D. Gan, andH. Qian, “Beyond obstacles: adaptive relay transceiver,”IEEE Microwave Mag., accepted (invited paper).
Conference Paper
C1Y. Shu,H. Qian, and X. Luo, “A 18.6-to-40.1GHz, 201.7dBc/Hz FoMT multi-core oscillator using E-M mixed-coupling resonance boosting,” in IEEE ISSCC, San Franscisco, CA, Feb. 2020.
C2 C. Han, Y. Rao,H. Qian, and X. Luo, “High selectivity bandpass filter with wide upper stopband using harmonic suppression structure”, inIEEE International Symposium on Radio-Frequency Integration Technology, Nanjing, Aug. 2019. (Best Student Paper Award, 3rd Place).
C3H. Qian, Y. Shu, J. Zhou, and X. Luo, “A 20-32GHz digital quadrature transmitter with notched matching and mode-switch topology for 5G wireless and backhaul system,” inIEEE RFIC, Boston, MA, USA, Jun. 2019.
C4 Y. Shu,H. Qian, and X. Luo, “A 173 GHz transformer-based push-push oscillator with 11.2% tuning range in 28nm CMOS,” inIEEE MTT-s Int. Wireless Symp., Chengdu, China, May. 2018. (Best Student Paper Award, 2ed Place)
C5 H. Qian, J. O. Liang, N. Zhu, P. Gao, and X. Luo, “A 3-7GHz 4-Element Digital Modulated Polar Phased-Array Transmitter with 0.35° Phase Resolution and 38.2% Peak System Efficiency”, inIEEE Custom Integrated Circuits Conference,Austin, Texas, USA, Apr. 2017.
C6H. Qian, J. O. Liang, N. Zhu, P. Gao, and X. Luo, “A 3.1–7 GHz 40-nm CMOS digital polar transmitter with high data-rate and feed-forward operation”, inIEEE International Symposium on Radio-Frequency Integration Technology, Taiwan, Aug. 2016. (Best Student Paper Award, 1st Place).
C7H. Qian, J. O. Liang, and X. Luo, “A 3.5-9.5 GHz compact digital power amplifier with 39.3% Peak PAE in 40nm CMOS technology”, inIEEE MTT-S International Wireless Symp., Shenzhen, China, Apr. 2015. (Best Student Paper Award, 1st Place).
C8H. Qianand X. Luo, “Novel on-chip passive circuits for RF, microwave, millimeter-wave and sub-THz applications”, inIEEE MTT-S International Microwave Workshop Series on Advanced Materials and Processes for RF and THz Applications, Suzhou, China, Jul. 2015. (Invited Paper)
C9B. Yang,H. Qian, J. Zhou, Y. Shu, and X. Luo, “A 90-98 GHz 2×2 phased-array transmitter with high resolution phase control and digital gain compensation,” inIEEE MTT-S Int. Microwave Sym. Dig., Boston, MA, USA, Jun. 2019. (Best Student Paper Award Finalist)
C10W. Chen, Y. Shu, Z. Deng,H. Qian, and X. Luo, “A wideband quasi-circulator with low NF and high P1dB using noise-canceling technique,” inIEEE MTT-S Int. Microwave Sym. Dig., Boston, MA, USA, Jun. 2019.
C11 Y. Shu,H. Qian, and X. Luo, “A 20.7-31.8GHz dual-mode voltage waveform-shaping oscillator with 195.8dBc/Hz FoMTin 28nm CMOS,” inIEEE RFIC, Philadelphia, PA, USA, Jun. 2018.
C12 Y. Shu,H. Qian, and X. Luo, “A 169.6 GHz hybrid mode-switching push-push oscillator with 21.7% tuning range and 180.6dBc/Hz FoMTin 28nm CMOS technology,” inIEEE MTT-S Int. Microwave Sym. Dig., Philadelphia, PA, USA, Jun. 2018.
C13J. Ren,H. Qian, and X. Luo, “A wideband filtering balun using CPW-to-slotline transitions,” inIEEE MTT-S Int. Microwave Sym. Dig., Philadelphia, PA, USA, Jun. 2018. (Best Student Paper Award Finalist).
C14 Z. Deng,H. Qian, and X. Luo, “A compact quasi-circulator with high isolation using reconfigurable 180° hybrid,” inIEEE MTT-S Int. Microwave Sym. Dig., Philadelphia, PA, USA, Jun. 2018.
C15 L. Fan,H. Qian, B. Yang, G. Wang, and X. Luo, “Filtering power divider with wide stopband using open-stub loaded coupled-line and hybrid microstrip T-stub/DGS cell,” inIEEE MTT-S Int. Microwave Sym. Dig., Philadelphia, PA, USA, Jun. 2018.
C16 Y. Rao,H. Qian, R. Gomez-Garcia, and X. Luo, “Dual-band bandpass filter with ultra-wide upper stopband using slow-wave dual-resonance cells,” inIEEE MTT-S Int. Microwave Sym. Dig., Philadelphia, PA, USA, Jun. 2018.
榮譽獎項
2018年IEEE IMS最佳學生設計競賽獎
2017年IEEE IMS最佳學生設計競賽獎
2018年IEEE IWS最佳學生論文獎
2015年IEEE IWS最佳學生論文獎
2016年IEEE RFIT最佳學生論文獎
2018年IEEE MTT-Society Graduate Fellowship Award(中國首次)

