
空间多光谱成像的旋转滤光轮机构动力学试验研究
Dynamic experiment of a rotary filter wheel mechanism for spatial multispectral imaging
卫星相机 / 滤光轮机构 / 模态试验 / 微振动 {{custom_keyword}} /
satellite camera / filter wheel mechanism / modal test / micro-vibration {{custom_keyword}} /
[1] 马文坡,练敏隆. “高分四号”卫星凝视相机的技术特点[J]. 航天返回与遥感,2016, 37(4): 26-30.
MA Wen-po, LIAN Min-long, Technical characteristics of the staring camera on board GF-4 satellite [J]. Spacecraft recovery and remote sensing, 2016, 37(4): 26-30.
[2] Wright G S, Wright D, Goodson G B, et al. The mid-infrared instrument for the James Webb Space Telescope, II: design and build [J]. Publications of the Astronomical Society of the Pacific, 2015, 127: 595-611.
[3] Lemke D, Böhm A, Bonis de F, et al. Cryogenic filter- and spectrometer wheels for the Mid Infrared Instrument (MIRI) of the James Webb Space Telescope (JWST) [C], Proceeding of SPIE, 2006, 6273(24): 1-8.
[4] Holmes R, Grozinger U, Krause O, et al. A Filter Wheel Mechanism for the Euclid Near-Infrared Imaging Photometer [C], Proceeding of SPIE, 2010, 7739(1A): 1-10.
[5] Kapoor A, Sharma G, Kumar HN S, et al. A novel shape memory alloy-based filter wheel drive mechanism for astronomical payloads [J]. Journal of Aerospace Engineering, 2018: 1-16.
[6] Oh H U, Lee K J, Jo M S. A passive launch and on-orbit vibration isolation system for the spaceborne cryocooler [J]. Aerospace Science and Technology, 2013, 28: 324-331.
[7] Lee D O, Park G, Han J H. Experimental study on on-orbit and launch environment vibration isolation performance of a vibration isolator using bellows and viscous fluid [J]. Aerospace Science and Technology, 2015: 1-9.
[8] Quagliato L, Kim D, Lee N, et al. Run-out based crossed roller bearing life prediction by utilization of accelerated testing approach and FE numerical models [J]. International Journal of Mechanical Science, 2017, 130: 99-110.
[9] Cui L, Zhang Y, Zhang F, et al. Vibration response mechanism of faulty outer race rolling element bearings for quantitative analysis [J]. Journal of Sound and Vibration, 2016, 364: 67-76.
[10] 张 恒,李世其,刘世平,等. 一种聚类优化的传感器布置方法研究 [J]. 振动与冲击, 2017, 36(14): 61-65.
ZHANF Heng, LI Shi-qi, LIU Shi-ping, et al. Optimal sensor placement by using clustering method [J]. Journal of vibration and shock, 2017, 36(14): 61-65.
/
〈 |
|
〉 |