[1] 张凤英,刘文怡,杨慧,等. 远程遥测姿态控制系统设计[J]. 计算机测量与控制,2015,23(1):102-105. ZHANG Fengying,LIU Wenyi,YANG Hui,et al. Design of telemetry posture control system[J]. Computer Measurement & Control,2015,23(1):102-105. [2] 张四江,张凯,张剑伟,等. 一种提高地脚螺栓安装精度的自动辅助装置设计[J]. 机械研究与应用,2023,36(5):94-96,100. ZHANG Sijiang,ZHANG Kai,ZHANG Jianwei,et al. An automatic auxiliary device design to improve the installation accuracy of anchor bolts[J]. Mechanical Research & Application,2023,36(5):94-96,100. [3] BARROT F. Acceleration and inclination sensors based on magnetic levitation:application in the particular case of structural health monitoring in civil engineering[R]. EPFL,2008. [4] PEI Huafu,YIN Jianhua,ZHU Honghu,et al. Monitoring of lateral displacements of a slope using a series of special fibre bragg grating-based in-place inclinometers[J]. Measurement Science and Technology,2012,23(2):025007. [5] YAO Baoyin,FENG Lishuang,WANG Xiao,et al. Micro-grating tilt sensor with self-calibration and direct intensity modulation[J]. Optik - International Journal for Light and Electron Optics,2015,126(1):144-147. [6] PAN Jianjun,NAN Qiuming,LI Shujie,et al. Development of a high resolution optical-fiber tilt sensor by FP filter[C]// 201725th Optical Fiber Sensors Conference (OFS). IEEE,2017:1-4. [7] CHEN Fubin,TIAN Wenjie,WEI Y. Highly sensitive resonant sensor using quartz resonator cluster for inclination measurement[J]. Review of Scientific Instruments,2020,91(5):055005. [8] JIAO Lihong,WINISTOERFER M. Diamagnetic levitation for passive tilt sensors[J]. MRS Online Proceedings Library,2007,998(1):1-6. [9] PIGOT C,POULIN G,REYNE G. Micro-Scale diamagnetic levitation:application to an inclinometer[J]. Sensor Letters,2009,7(3):329-333. [10] XU Yuanping,JIANG Qiqi,YANG Ke,et al. A novel ultra-high-resolution inclination sensor based on diamagnetic levitation[J]. Sensors and Actuators A:Physical,2022,343:113686. [11] NEMOIANU I,MANESCU V,PALTANEA G. Inclination sensing capabilities of a symmetrical permanent magnet levitation setup with electromagnets and diamagnetic stabilization[J]. Revue Roumaine Des Sciences Techniques-Serie Electrotechnique Et Energetique,2017,62:123-128. [12] WEST J,JAYAWANT B. A new linear oscillating motor[J]. Proceedings of the IEE-Part A:Power Engineering,1962,109(46):292-300. [13] 李涛,徐龙祥. 交流感应磁悬浮技术的研究[J]. 机械设计与制造,2013(7):126-128. LI Tao,XU Longxiang. The research on technology of AC induction magnetic levitation[J]. Machinery Design & Manufacture,2013(7):126-128. [14] GAO Qiuhua,ZHANG Wenming,ZOU Hongxiang,et al. Design and analysis of a bistable vibration energy harvester using diamagnetic levitation mechanism[J]. IEEE transactions on Magnetics,2017,53(10):1-9. [15] BARRY N,CASEY R. Elihu Thomson's jumping ring in a levitated closed-loop control experiment[J]. IEEE Transactions on Education,1999,42(1):72-80. [16] XU Yuanping,CUI Qingwen,KAN R,et al. Realization of a diamagnetically levitating rotor driven by electrostatic field[J]. IEEE/ASME Transactions on Mechatronics,2017,22(5):2387-2391. [17] GAO Qiuhua,YAN Han,ZOU Hongxiang,et al. Magnetic levitation using diamagnetism:mechanism,applications and prospects[J]. Science China Technological Sciences,2021,64(1):44-58. [18] GUNAWAN O,VIRGUS Y,TAI K. A parallel dipole line system[J]. Applied Physics Letters,2015,106(6):062407-1-062407-5. [19] FURLANI E. Permanent magnet and electromechanical devices:materials,analysis,and applications[M]. New York State:Academic press,2001. [20] SU Yufeng,XIAO Zhiming,YE Zhitong,et al. Micromachined graphite rotor based on diamagnetic levitation[J]. IEEE Electron Device Letters,2015,36(4):393-395. [21] 苏宇锋,叶志通,张坤. 抗磁悬浮石墨转子理论分析与实验[J]. 中国机械工程,2017,28(9):1039-1043. SU Yufeng,YE Zhitong,ZHANG Kun. Theoretical analyses and experiments of micromachined graphite rotor based on diamagnetic levitation[J]. China Mechanical Engineering,2017,28(9):1039-1043. [22] SU Yufeng,ZHANG Kun,YE Zhitong. Levitation and nonlinearity characteristics of a diamagnetic levitation structure[J]. International Journal of Applied Electromagnetics and Mechanics,2017,55(1):113-128. [23] JEFFERY R,AMIRI F. The phase shift in the jumping ring[J]. The Physics Teacher,2008,46(6):350-357. [24] 张传凤. 感应线圈型电磁发射器弹丸加速特性的研究[D]. 合肥:安徽大学,2020. ZHANG Chuanfeng. Research on acceleration characteristics of projectilefor induction coil electromagnetic launcher[D]. Hefei:Anhui University,2020. [25] LYU Y,MENG Fanyi,YANG Guohui,et al. A method of using nonidentical resonant coils for frequency splitting elimination in wireless power transfer[J]. IEEE Transactions on Power Electronics,2015,30(11):6097-6107. [26] ACERO J,CARRETERO C,LOPE I,et al. Analysis of the mutual inductance of planar-lumped inductive power transfer systems[J]. IEEE Transactions on Industrial Electronics,2011,60(1):410-420. |