[1]HU Cheng, CHEN Zhiyang, LI Yuanhao, et al. Research Progress on Geosynchronous Synthetic Aperture Radar[J]. Fundamental Research, 2021, 1(3):346-363.
[2]陈传志, 董家宇, 陈金宝, 等. 空间大型星载抛物面天线研究进展[J]. 航空学报, 2021, 42(1):133-153.
CHEN Chuanzhi, DONG Jiayu, CHEN Jinbao, et al. Large Spaceborne Parabolic Antenna:Research Progress[J]. Acta Aeronautica et Astronautica Sinica, 2021, 42(1):133-153.
[3]邱慧, 刘志全, 曾惠忠, 等. 航天器可展SAR天线结构综述[J]. 宇航学报, 2021, 42(10):1197-1206.
QIU Hui, LIU Zhiquan, ZENG Huizhong, et al. Review of Deployable SAR Antenna Structures of Spacecraft[J]. Journal of Astronautics, 2021, 42(10):1197-1206.
[4]郭俊康, 余德文, 赵强强, 等. 一种星载SAR天线空间可展支撑结构装配精度预测方法:CN109800505A[P]. 2019-05-24.
GUO Junkang, YU Dewen, ZHAO Qiangqiang, et al. A Method for Predicting the Assembly Accuracy of Spatially Expandable Support Structures for Satellite-based SAR Antennas:CN109800505A[P]. 2019-05-24.
[5]MATSUZAWA A, SAITO M, IGUCH S, et al. Development of High-accuracy Pointing Verification for ALMA Antenna[C]∥SPIE Conference on Ground-based and Airborne Telescopes. Montreal:SPIE, 2014:723-729.
[6]余德文, 赵强强, 陈飞飞, 等. 利用结构等效转换的空间可展机构装配误差建模与灵敏度分析[J]. 西安交通大学学报, 2019, 53(4):15-23.
YU Dewen, ZHAO Qiangqiang, CHEN Feifei, et al. Assembly Error Modeling and Sensitivity Analysis for Spatial Deployable Mechanisms with Structural Equivalent Transformation[J]. Journal of Xian Jiaotong University, 2019, 53(4):15-23.
[7]刘荣强, 史创, 郭宏伟, 等. 空间可展开天线机构研究与展望[J]. 机械工程学报, 2020, 56(5):1-12.
LIU Rongqiang, SHI Chuang, GUO Hongwei, et al. Review of Space Deployable Antenna Mechanisms[J]. Journal of Mechanical Engineering, 2020, 56(5):1-12.
[8]侯国勇, 关富玲, 赵孟良. 桁架式可展开天线的关节运动可靠度分析[J]. 中国机械工程, 2008, 19(8):959-963.
HOU Guoyong, GUAN Fuling, ZHAO Mengliang. Movement Reliability Analysis of Joints in Deployable Truss Antenna[J]. China Mechanical Engineering, 2008, 19(8):959-963.
[9]HEDGEPETH J M, ADAMS L R. Design Concepts for Large Reflector Antenna Structures[M]. Pasadena:California Institute of Technology Press, 1983:12-16.
[10]GREENE W H. Effects of Random Member Length Errors on the Accuracy and Internal Loads of Truss Antennas[J]. Journal of Spacecraft & Rockets, 1985, 22(5):554-559.
[11]BITTERA M. Modeling Broadband Wire Antennas with Complex Geometry[J]. Procedia Engineering, 2014, 69:1082-1087.
[12]MOBREM M. Methods of Analyzing Surface Accuracy of Large Antenna Structures due to Manufacturing Tolerances[C]∥44th AIAA/ASME/ASCE/AHS/ASC Structures, Structural Dynamics, and Materials Conference. Norfolk, 2013:508-517.
[13]丁建中, 王春洁. 含铰链间隙板式卫星天线展开精度分析[J]. 北京航空航天大学学报, 2016, 42(12):2625-2631.
DING Jianzhong, WANG Chunjie. Deployment Accuracy Analysis of Planar Satellite Antenna with Joint Clearances[J]. Journal of Beijing University of Aeronautics and Astronautics, 2016, 42(12):2625-2631.
[14]南凯刚, 闫如玉, 李光明, 等. 大型桁架天线装配精度仿真与代理模型的构建[J]. 成组技术与生产现代化, 2021, 38(4):27-36.
NAN Kaigang, YAN Ruyu, LI Guangming, et al. Assembly Error Simulation and Proxy Model Construction of Large-scale Truss Antenna[J]. Group Technology & Production Modernization, 2021, 38(4):27-36.
[15]CHIU S. Moving Target Parameter Estimation for RADARSAT-2 Moving Object Detection Experiment(MODEX)[J]. International Journal of Remote Sensing, 2010, 31(15):4007-4032.
[16]WU Tengfei, ZHAO Qiangqiang, JIANG Dong-lei, et al. System Reliability and Sensitivity Analysis for Extendible Support Structures with Multiple Assembly Failure Modes[J]. Engineering Structures, 2024, 302:1-15.
[17]VINCENT S, FRANCIS S, RAIMOND K, et al. A Novel Planar Antenna Array for a Ground-based Synthetic Aperture Radar[J]. Serbian Journal of Electrical Engineering, 2019, 16(2):195-209.
[18]ZHANG Guoxing, XIA Xinlu, HOU Yulei, et al. Optimal Design and Trajectory Tracking Experiment of a Novel 3-DOF Parallel Antenna Mechanism[J]. AIP Advances, 2022, 12(2):025321.
[19]WANG Yimeng, YU Shuyue, REN Shuai, et al. Close-range Industrial Photogrammetry and Application:Review and Outlook[C]∥Conference on Applied Optics and Photonics China. Beijing,2020:152-162.
[20]冉险生, 朱才朝, 黄泽好. 工业近景摄影测量中基于非量测镜头的误差分析[J]. 中国机械工程, 2014, 25(19):2603-2607.
RAN Xiansheng, ZHU Caichao, HUANG Zehao. Error Analysis Based on Non-metric Lens in Industrial Close-range Photogrammetry[J]. China Mechanical Engineering, 2014, 25(19):2603-2607.
[21]黄桂平, 吕传景, 王伟峰. 工业摄影测量技术发展及其在航空制造中的应用[J]. 航空精密制造技术, 2017, 53(2):5-8.
HUANG Guiping, LYU Chuanjing, WANG Wei-feng. Application of Industrial Photogrammetry Technology and Its Development in Aeronautical Manufacturing[J]. Aviation Precision Manufacturing Technology, 2017, 53(2):5-8.
[22]LIU Zhengzhen, CHEN Tianding. Distance Measurement System Based on Binocular Stereo Vision[C]∥International Joint Conference on Artificial Intelligence. Pasadena:IJCAI, 2009:456-459.
[23]TSAI R Y. A Versatile Camera Calibration Technique for High-accuracy 3D Machine Vision Metrology Using Off-the-shelf TV Cameras and Lenses[J]. IEEE Journal on Robotics and Automation, 1987, 3(4):323-344.
[24]FORRESTER A I J, KEANE A J. Recent Advances in Surrogate-based Optimization[J]. Progress in Aerospace Sciences, 2009, 45(1):50-79.
[25]杨癸庚, 卫鑫鹏, 樊浩, 等. 基于Kriging代理模型的环形网状天线展开过程规划[J]. 宇航学报, 2023, 44(7):988-997.
YANG Kuigeng, WEI Xinpeng, FAN Hao, et al. Deployment Process Planning of Hoop-truss Mesh Antennas Based on Kriging Surrogate Model[J]. Journal of Astronautics, 2023, 44(7):988-997.
[26]WANG Shuo, LIU Yin, ZHOU Qi, et al. A Multi-fidelity Surrogate Model Based on Moving Least Squares:Fusing Different Fidelity Data for Engineering Design[J]. Structural and Multidisciplinary Optimization, 2021, 64(6):3637-3652.
[27]FRAZIER P I. A Tutorial on Bayesian Optimization[EB/OL]. ArxiV, 2018:1807. 02811. http:∥arxiv. org/abc/1807. 02811.
[28]SHAHRIARI B, SWERSKY K, WANG Z, et al. Taking the Human Out of the Loop:a Review of Bayesian Optimization[J]. Proceedings of the IEEE, 2016, 104(1):148-175.
[29]周奇, 杨扬, 宋学官, 等. 变可信度近似模型及其在复杂装备优化设计中的应用研究进展[J]. 机械工程学报, 2020, 56(24):219-245.
ZHOU Qi, YANG Yang, SONG Xueguan, et al. Survey of Multi-Fidelity Surrogate Models and Their Applications in the Design and Optimization of Engineering Equipment[J]. Journal of Mechanical Engineering, 2020, 56(24):219-245.
[30]陈东宁, 侯安农, 姚成玉, 等. 一种新型动态贝叶斯网络分析方法[J]. 中国机械工程, 2020, 31(12):1394-1406.
CHEN Dongning, HOU Annong, YAO Chengyu, et al. A Novel Dynamic Bayesian Network Analysis Method[J]. China Mechanical Engineering, 2020, 31(12):1394-1406.
[31]RASUMUSSEN C E, WILLIAMS C K I. Gaussian Processes for Machine Learning[M]. Cambridge:MIT Press, 2005:18-22.
[32]PACIOREK C J, SCHERVISH M J. Nonstationary Covariance Functions for Gaussian Process Regression[C]∥International Conference on Neural Information Processing Systems. British Columbia:NeurIPS Foundation, 2003:273-280.
[33]LI Jianxing, YANG An, TIAN Chunming, et al. Multi-fidelity Bayesian Algorithm for Antenna Optimization[J]. Journal of Systems Engineering and Electronics, 2022, 33(6):1119-1126.
[34]HOFFMAN M, SHAHRIARI B, FREITAS N. On Correlation and Budget Constraints in Model-based Bandit Optimization with Application to Automatic Machine Learning[C]∥International Conference on Artificial Intelligence and Statistics. Reykjavík:AISTATS, 2014:365-374.
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