职称:教授,博士生导师 | ||
办公室:九龙湖信息楼A1208 | ||
办公电话:025-83790806 | ||
Email:caozx@seu.edu.cn | ||
学习经历 | ||
2012.11-2013.12 美国北卡莱罗纳州州立大学公派访问学者 | ||
2002.03-2005.06 东南大学/博士研究生 | ||
1999.09-2002.03 南京航空航天大学/硕士研究生 | ||
教授课程 | ||
2006年~现在,信号与系统-本科 | ||
研究方向 | ||
1.天线理论与应用:天线单元及阵列技术、相控阵天线技术、共形天线技术、天线阵列解耦理论与方法、超/甚低频机械天线理论与技术、反射面与透镜天线技术等; | ||
2.隐身理论与应用:吸透一体化理论与技术、有源多模吸透理论与应用等; | ||
3.阵列信号处理理论与方法:阵列信号处理算法、高精度DOA估计算法、雷达信号处理算法以及雷达跟踪技术等; | ||
4.射频电路技术:微波毫米波低噪放电路技术、功放技术、频综技术以及多功能组件电路技术等。 | ||
近期发表论文 | ||
1. S. C. Zhu, Y. L. Wang, Y. H. Feng, D. L. Liu, Y. Q. Guo, Z. X. Wang and Z. X. Cao*, Ultra miniaturized frequency-selective rasorber with P/L-band absorption and C/X/Ku-band transmission for low-frequency RCS or EMI suppression of ultra-wideband antennas, AEU - International Journal of Electronics and Communications, 194, 155747, Apr. 2025. | ||
2. W. H. Zhang, Z. X. Cao*, X. Y. Wang, T. Liu and J. C. Wang, Modeling and measurement of through-the-earth communication based on ELF magnetic signals from permanent magnet mechanical antennas, IEEE Sensors Journal, vol. 25, no. 1, pp. 1209-1215, Jan. 2025. | ||
3. S. C. Zhu, Y. H. Feng, X. Gao, D. Gao, Y. P. Ma and Z. X. Cao*, A low-complexity and wideband-reconfigurable active frequency-selective surface with flexible polarization controllability, IEEE Antennas and Wireless Propagation Letters, Dec. 2024. doi: 10.1109/LAWP.2024.3518558. | ||
4. W. H. Zhang, Z. X. Cao*, X. Y. Wang, T. Liu and Z. X. Wang, A new ultra-compact communications system across air-sea water based on ELF magnetic mechanical antenna, Physica Scripta, 99, 125526, Nov. 2024. | ||
5. W. H. Zhang, Z. X. Cao*, X. Y. Wang, X. Quan and M. J. Sun, Design, array, and test of super-low-frequency mechanical antenna based on permanent magnet, IEEE Transactions on Antennas and Propagation, vol. 71, no. 3, pp. 2321-2329, Mar. 2023. | ||
6. X. Quan, Z. X. Cao*, H. M. Zhou, S. C. Zhu, G. H. Deng and C. Z. Xu, Common-mode resonance suppressing surface for tightly coupled array, IEEE Transactions on Antennas and Propagation, vol. 70, no. 12, pp. 12358-12363, Dec. 2022. | ||
7. X. Quan, Z. X. Cao*, H. M. Zhou and S. C. Zhu, A low-profile and wide-angle scanning planar ultrawideband modular antenna with ultra-thin loading window, IEEE Access, vol. 10, pp. 105556-105563, Oct. 2022. | ||
8. S. C. Zhu, Z. X. Cao*, H. M. Zhou, R. L. Geng, G. H. Deng and X. Quan, Ultra-wide transmission band frequency-selective rasorber using 2.5-D miniaturized structures, Optics express, 30(19), 33980–33993, Sep. 2022. | ||
9. D. Gao, Z. X. Cao*, X. Quan, C. Z. Xu, P. Chen, A complementary split-ring array for compact decoupling 2 × 2 circularly polarized antenna, Microwave and Optical Technology Letters, vol. 63, no. 4, pp. 1294–1303, Apr. 2021. | ||
10. D. Gao, Z. X. Cao*, S. D. Fu, X. Quan and P. Chen, A novel slot-array defected ground structure for decoupling microstrip antenna array, IEEE Transactions on Antennas and Propagation, vol. 68, no. 10, pp. 7027-7038, Oct. 2020. | ||
11. D. Gao, Z. X. Cao*, X. Quan, M. J. Sun, S. D. Fu and P. Chen, A low-profile decoupling slot-strip array for 2 × 2 microstrip antenna, IEEE Access, vol. 8, pp. 113532-113542, Jun. 2020. | ||
12. S. D. Fu, Z. X. Cao*, X. Quan and C. Z. Xu, A broadband dual-polarized notched-band antenna for 2/3/4/5G base station, IEEE Antennas and Wireless Propagation Letters, vol. 19, no. 1, pp. 69-73, Jan. 2020. | ||
13. S. D. Fu, Z. X. Cao*, P. Chen, D. Gao and X. Quan, A novel bandwidth-enhanced dual-polarized antenna with symmetrical closed-resonant-slot pairs, IEEE Access, vol. 7, pp. 87943-87950, Jun. 2019. | ||
14. Z. X. Cao, H. Y. Geng, Z. M. Chen, P. Chen, Sparse-Based Millimeter Wave Channel Estimation with Mutual Coupling Effect, Electronics, 8, 358, Mar. 2019. | ||
15. Y. H. Feng, S. C. Zhu and Z. X. Cao*, A novel low-profile Ka-band circularly polarized double-Folded transmitarray antenna, 2024 International Symposium on Antennas and Propagation (ISAP), pp. 1-2, Incheon, Republic of Korea, Nov. 5-8, 2024. | ||
16. S. C. Zhu, D. Gao and Z. X. Cao*, An ultra-wideband and polarization-insensitive frequency-selective rasorber/absorber with a wide switchable transmission band, 2024 IEEE International Symposium on Antennas and Propagation and INC/USNC-URSI Radio Science Meeting (AP-S/INC-USNC-URSI), pp. 2035-2036, Firenze, Italy, Jul. 14-19, 2024. | ||
17. H. M. Zhou and Z. X. Cao*, A novel ultra-wideband low-profile and wide-angle scanning tightly coupled microstrip array (TCMA) with FSS superstate, 2024 IEEE International Symposium on Antennas and Propagation and INC/USNC‐URSI Radio Science Meeting (AP-S/INC-USNC-URSI), pp. 2437-2438, Firenze, Italy, Jul. 14-19, 2024. | ||
18. W. H. Zhang, Z. X. Cao* and X. Y. Wang, Optimal operating modes of rotating mechanical antennas in sea/air cross-domain communications, 2024 IEEE International Symposium on Antennas and Propagation and INC/USNC‐URSI Radio Science Meeting (AP-S/INC-USNC-URSI), pp. 731-732, Firenze, Italy, Jul. 14-19, 2024. | ||
19. C. Y. Wang, G. H. Deng and Z. X. Cao*, A high-efficiency doherty power amplifier design with continuous inverse class-F, 2022 IEEE 10th Asia-Pacific Conference on Antennas and Propagation (APCAP), pp. 1-2, Xiamen, China, Nov. 4-7, 2022. | ||
20. S. C. Zhu, H. M. Zhou, X. Quan and Z. X. Cao*, An ultra-wideband and wide-angle absorber based on tightly coupled dipole array, 2022 IEEE 10th Asia-Pacific Conference on Antennas and Propagation (APCAP), pp. 1-2, Xiamen, China, 2022, Nov. 4-7, 2022. | ||
21. G. H. Deng, D. Gao, X. Quan, M. T. Xie and Z. X. Cao*, Design of linear polarization antenna with wide bandwidth and low mutual coupling, 2021 Photonics & Electromagnetics Research Symposium (PIERS), pp. 1326-1330, Hangzhou, China, Nov. 21-25, 2021. | ||
主要科研项目 | ||
承担纵向重大基金、国自然基金等30多个项目,总额达3000余万。 | ||
专利 | ||
专利号 | 专利名称 | 专利类型 |
ZL201910144603.1 | 一种宽带腔体移相器 | 发明专利 |
ZL202010576714.2 | 一种超宽带紧耦合天线阵列及天线设备 | 发明专利 |
ZL202110584756.5 | 低剖面宽带宽角扫描紧耦合天线单元及阵列 | 发明专利 |
ZL201910991663.7 | 一种宽带集成巴伦及天线单元 | 发明专利 |
ZL202010289684.7 | 一种基于相位优化的深度学习测向方法 | 发明专利 |
ZL202111008808 | 一种图特征学习下的海杂波抑制方法 | 发明专利 |
ZL201920261218.0 | 一种频带增强双极化基站天线 | 实用新型 |
ZL202021176840.0 | 一种超宽带紧耦合天线阵列及天线设备 | 实用新型 |
ZL202121159297.8 | 低剖面宽带宽角扫描紧耦合天线单元及阵列 | 实用新型 |
ZL2023216566521 | 一种软件无线电天线阵元及天线阵列 | 实用新型 |
获奖情况 | ||
1、北斗智能终端关键技术开发与应用,科学技术奖,三等奖,授予机构江苏省人民政府,2022-02-15,曹振新排序1/7; | ||
2、北斗卫星导航地面接收终端关键技术及其应用,科学技术奖,二等奖,授予机构江苏省人民政府,2013-03-01,曹振新排序1/9。 |