[1] |
CHENG K, DONG H, CAI Zh R, et al. Design of high efficiency long distance laser power transmission [J]. Spacecraft Engineering, 2015, 24(1):8-12(in Chinese). |
[2] |
FAKIDIS J, VIDEEV S, KUCERA S, et al. Indoor optical wireless power transfer to small cells at nighttime [J]. Journal of Lightwave Technology, 2016, 34(13): 3236-3258. doi: 10.1109/JLT.2016.2555883 |
[3] |
YANG H, LU J, ZHOU D Y, et al. Experimental study about effect of 1070nm CW laser irradiation on three-junction GaAs solar cells[J]. Laser Technology, 2017, 41(3): 318-321(in Chinese). |
[4] |
WANC C, MA Z. Design of wireless power transfer device for UAV[C]//IEEE International Conference on Mechatronics and Automation. New York, USA: IEEE, 2016: 2449-2454. |
[5] |
YING J J, CHEN Y D, WU D Sh, et al. The UAV LSER charging tracking precision analysis[J]. Semiconductor Optoelectronics, 2018, 39(4): 569-574(in Chinese). |
[6] |
TANG L, ZHONG Y Ch, ZHANG Ch X, et al. Research situation and development trend of laser wireless power transmission key technology[J]. Laser Journal, 2017 38(10): 28-32(in Chinese). |
[7] |
FAKIDIS J, VIDEV S, KUCERA S, et al. Indoor optical wireless power transfer to small cells at nighttime [J]. Journal of Lightwave Technology, 2016, 34(13): 3236-3258. doi: 10.1109/JLT.2016.2555883 |
[8] |
LI Zh P, ZHANG Y G, AI Y, et al. Laser tracking and wireless power supply system for unmanned aerial vehicles[J]. Laser Technology, 2018, 42(3):306-310(in Chinese). |
[9] |
QIAO L, YANG Y N. Experimental research of laser wireless power transmission efficiency[J]. Laser Technology, 2014, 38(5): 590-594(in Chinese). |
[10] |
NUCENT T, KARE J, BASHFORD D, et al. 12-hour hover: Flight demonstration of a laser powered quadrocopter [C]//AUVSI Unmanned Systems North America. Washington DC, USA: Curran Associates Inc, 2011: 906-924. |
[11] |
ZHOU W, JIN K. Efficiency optimization inject current characteristic of laser diode for wireless power transmission [C]//IEEE Energy Conversion Congress and Exposition. New York, USA: IEEE, 2015: 3082-3086. |
[12] |
LI M, AI Y, CAO Y. Research of fine tracking servo system for FSO terminal[J]. Laser Technology, 2009, 33(3): 262-265(in Chin-ese). |
[13] |
ZHOU W Y, JIN K. Status and trends of laser powered unmanned aerial vehicles[J]. Journal of Nanjing University of Aeronauties & Astronauties, 2013, 45(6): 784-791(in Chinese). |
[14] |
LI Zh Y, SHI D L, SHEN J Sh, et al. Laser-based wireless energy transmission technology [J]. Space Electronic Technology, 2013, 43(3):71-76(in Chinese). |
[15] |
MIAO X, ZHANG D B, SONG Y H, et al. UAV precise recycling technology based on laser terminal guidance[J]. Laser Technology, 2018, 42(5): 687-691(in Chinese). |
[16] |
HE Sh, ZHAO X, SHI X. Improved strong tracking quadrature kalman filtering algorithm[J]. Computer Technology and Development, 2018, 28(7): 43-47(in Chinese). |
[17] |
TIAN J L, HU X Y, YOU A Q. Compound control of photoelectric tracking by using adaptive Kalman filtering algorithm[J]. Optics and Precision Engineering, 2017, 25(7): 1941-1947(in Chin-ese). |
[18] |
WU Zh N, XIE J R, YANG Y N. Design and implementation of beam shaping for high power semiconductor lasers[J]. Laser Technology, 2017, 41(3): 416-420(in Chinese). |
[19] |
LIU X G, HUA W Sh, LIU X, et al. Methods to improve efficiency of photovoltaic receiver for laser powered unmanned aerial vehicle[J]. Infrared and Laser Engineering, 2016, 45(3): 0306002 (in Chinese). doi: 10.3788/irla201645.0306002 |