[1] Chen Y B, Zhong B. Principles of inertial navigation. Beijing: National Defense Industry Press, 2007: 1-5. (in Chinese) 陈永冰, 钟斌. 惯性导航原理. 北京:国防工业出版社, 2007: 1-5.[2] Zang R C, Cui P Y. Research on time series modeling method for gyroscope random bias. Journal of System Simulation, 2005, 17(8): 1845-1847. (in Chinese) 臧荣春, 崔平远. 陀螺随机漂移时间序列建模方法研究. 系统仿真学报, 2005, 17(8): 1845-1847.[3] Liu J F, Yuan G N, Wang K M. Analysis of gyro rotor surface deformation and its influence on performance. Navigation of China, 2006(2): 8-11. (in Chinese) 刘建锋, 袁赣南, 王奎民. 陀螺转子形状及变形分析和对陀螺性能的影响. 中国航海, 2006(2): 8-11.[4] Mansour W M, Lacchimi C. Two-axis dry tuned-rotor gyroscopes: design and technology. Journal of Guidance, Control, and Dynamics, 1993, 16(3): 417-425.[5] Wang X Q, Tian L, Jiang Z C, et al. The analysis of magnetic circuit in torque designing. Control Technology of Tactical Missile, 2010, 27(3): 31-33. (in Chinese) 王晓强, 田赁, 蒋正川, 等. 力矩器设计中磁路分析. 战术导弹控制技术, 2010, 27(3): 31-33.[6] Zhang Y E. Optimum design of the permanent-magnet torquer. Journal of Southeast University, 1998, 28(6): 155-158. (in Chinese) 张燕娥. 永磁式力矩器的优化设计. 东南大学学报, 1998, 28(6): 155-158.[7] McKelvie B, Galt H. The evolution of the ship's inertial navigation system for the fleet Ballistic missile program. Journal of the Institute of Navigation, 1978, 25(3): 310-322.[8] Wang H G,Williams T C. Strategic inertial navigation systems. High-accuracy inertially stabilized platforms for hostile environments. IEEE Control Systems Magazine, 2008: 65-84.[9] Kaiser K W. Temperature control of the inertial-grade floated rate-integrating gyroscope. IEEE Transactions on Automatic Control, 1970, AC-15(5): 521-529.[10] Zhang T, Zhang L, Zhang Y, et al. Research on the application of FMMEA in diesel. Journal of Engineering Graphics, 2009(6): 15-21. (in Chinese) 张彤, 张良, 张彧, 等. FMMEA在柴油发动机上的应用研究. 工程图学学报, 2009(6): 15-21.[11] Xiong W. Flexible gyro and accelerometer temperature characteristics of the model and error compensation. Xi'an: School of Automation, Northwestern Polytechnical University, 2006. (in Chinese) 熊伟. 挠性陀螺和加速度计温度特性模型研究及误差补偿技术. 西安: 西北工业大学自动化学院, 2006.[12] Guo J Q, Tian L, Zhang Y, et al. Prediction models and methodology of stress relaxation property from creep data. Journal of Mechanical Strength, 2011, 33(5): 685-689. (in Chinese) 郭进全, 田龙, 张勇, 等. 基于蠕变数据的应力松弛行为预测模型与方法. 机械强度, 2011, 33(5): 685-689.[13] Zheng C L, Chen J R, Yuan B, et al. Finite element analysis of adhesive bonded structures considering the creep behaviour of the adhesive. Journal of Astronautics, 1996, 17(4): 62-66. (in Chinese) 郑长良, 陈洁然, 袁彪, 等. 考虑胶层蠕变行为的胶接结构有限元分析. 宇航学报, 1996, 17(4): 62-66.[14] Peng Y D, Yi J H, Li L Y, et al. Effect of sintering temperature on the magnetic properties of high coercivity Sm2(Co,Fe,Cu,Zr)17 permanent magnets. Powder Metallurgy Technology, 2003, 21(1): 27-30. (in Chinese) 彭元东, 易健宏, 李丽娅, 等. 烧结温度对高矫顽力Sm2(Co,Fe,Cu,Zr)17永磁体磁性能的影响. 粉末冶金技术, 2003, 21(1): 27-30.[15] Zhou B L. Design and manufacture of DTG. Nanjing: Southeast University Press, 2002: 107-130. (in Chinese) 周百令. 动力调谐陀螺仪设计与制造. 南京: 东南大学出版社, 2002: 107-130. |