姓名: |
郭琨毅 |
职称: |
教授,博士生导师,应用电磁研究所副所长 |
学科方向: |
电磁仿真与天线、微波与太赫兹技术、集成电路工程 |
研究方向: |
雷达目标特性、复杂电磁环境仿真、雷达成像仿真等 |
办公电话: |
010-68915010 |
Email: |
guokunyi@bit.edu.cn |
北京理工大学教授、博士生导师,应用技术研究所副所长,北京市科技委项目评审专家,电波科学学报“电磁计算”和“目标散射特性”专刊编委。长期从事雷达目标特性、电磁仿真技术研究工作,主持国家自然科学基金3项、“十四五”目标特性领域共用技术1项、“173”基金1项、国防重大基础研究973项目专题2项、以及航天工业部门合作项目10余项。获2009年度北京市科学技术一等奖。已发表SCI论文30多篇,其中电磁领域顶级期刊10余篇。曾获北京理工大学优秀青年教师、北京理工大学研究生优秀学位论文指导老师,北京理工大学教学贡献奖等。
获得奖励:
[1] 2009年北京市科学技术一等奖
[2] 2011年北京理工大学优秀青年教师资助计划
[3] 2017年北京理工大学研究生优秀学位论文指导老师
[4] 2018年北京理工大学研究生优秀学位论文指导老师
[5] 2016年北京理工大学雷科教学贡献奖
[6] 2017年北京理工大学雷科教学贡献奖
[7] 2019年电波科学学报“电磁计算”专刊优秀论文
专利:
[1] 一种复杂小结构目标散射中心模型精确提取方法, CN201811391896.5
[2] 一种箔条云的半实物射频仿真三元组馈电系数确定方法,CN202110639114.0
[3] 一种行星地表非规则网格三维几何建模方法, CN202110022584.2
[4] 双向反射分布函数和散射中心的复合散射联合计算方法, CN202110022284.4
[5] 一种箔条的散射中心模型建模方法, CN202110218169.4
[6] 基于散射中心模型的大样本训练数据生成方法,CN202110624415.6
[7] 一种基于辅助树的多层快速多极子并行网格细剖方法,ZL201910168674.5
[8] 一种并行多层快速多极子树结构复合存储方法,ZL201910168049.0
[9] 基于三元并行多层快速多极子的电磁分析方法,ZL201910104972.8
[10] 一种集总元件阻抗灵敏度快速计算方法及优化方法,CN202010303694.1
代表论文:
[1] Zun Zhang, Kun-Yi Guo, Yuan Mou and Xin-Qing Sheng, "A Hybrid Parametric Scattering Model for an Object on a Dielectric Rough Surface," IEEE Transactions on Antennas and Propagation, accepted, 2022.
[2] Yan-Xi Chen, Kun-Yi Guo, Yuan Mou and Xin-Qing Sheng, "Scattering Center Modeling of Typical Planetary Landforms for Planetary Geomorphologic Exploration," IEEE Transactions on Antennas and Propagation, vol. 70, no. 2, pp. 1553-1558, Feb. 2022.
[3] Xiao-Tong Zhao, Kun-Yi Guo, Yan-Xi Chen and Xin-Qing Sheng, "Traveling Wave Scattering Center Model and Its Applications to ISAR Imaging," IEEE Transactions on Antennas and Propagation, vol. 69, no. 4, pp. 2437-2442, April 2021.
[4] Kun-Yi Guo, Xiao-Zhe Han, Bi-Yi Wu, Xin-Qing Sheng, “Parametric Scattering Center Model for Canonical and Composite Dielectric Objects,” IEEE Transactions on Antennas and Propagation, Vol. 68, pp. 3068-3079, Apr. 2020.
[5] Kun-Yi Guo, Xiao-Zhe Han, Xin-Qing Sheng. "Scattering center models of backscattering waves by dielectric spheroid objects ," Optics Express, 2018, 26(4):5060.
[6] Kun-Yi Guo, Quan-You Qu and Xin-Qing Sheng, "Geometry Reconstruction Based on Attributes of Scattering Centers by Using Time-Frequency Representations," IEEE Transactions on Antennas and Propagation, vol. 64, no. 2, pp. 708-720, Feb. 2016.
[7] Quan-You Qu, Kun-Yi Guo and Xin-Qing Sheng, "Scattering Centers Induced by Creeping Waves on Cone-Shaped Targets in Bistatic Mode," IEEE Transactions on Antennas and Propagation, vol. 63, no. 7, pp. 3257-3262, July 2015.
[8] Kun-Yi Guo ,E. G. Hoare, D. Jasteh, Xin-Qing Sheng and M. Gashinova, "Road Edge Recognition Using the Stripe Hough Transform From Millimeter-Wave Radar Images," IEEE Transactions on Intelligent Transportation Systems, vol. 16, no. 2, pp. 825-833, April 2015.
[9] Quan-You Qu, Kun-Yi Guo and Xin-Qing Sheng "An Accurate Bistatic Scattering Center Model for Extended Cone-shaped Targets," IEEE Transactions on Antennas and Propagation, vol. 62, no. 10, pp. 5209-5218, Oct. 2014.
[10] Kun-Yi Guo and Xin-Qing Sheng, "How to Predict Scattering and Range Profiles using Complex Targets with Cavities," IEEE Transactions on Aerospace and Electronic Systems, vol. 47, no. 1, pp. 155-165, January 2011.