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Proceedings Paper

Free space optical communication experiments on the vibration platform
Author(s): Haotian Zhou; Yong Ai; Chujie Chen; Yanfei Liu; Yonghong Dai; Jing Chen; Shan Xin; Hongjun Li
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Paper Abstract

Communication experiments of free space optical system which was laid on the vibration platform were implemented. In the communication experiments, the transmitting terminal is static and the receiving terminal is laid on the vibration platform. The vibration platform was used to validate the performance of the APT (acquiring, pointing and tracking) system. The analytic results of experimental data prove that the APT system can effective restrain the destabilization of laser beam caused by the vibration platform. The communication distance is 3.4 km and the communication rate is 2.5 Gbps.

Paper Details

Date Published: 15 October 2015
PDF: 7 pages
Proc. SPIE 9674, AOPC 2015: Optical and Optoelectronic Sensing and Imaging Technology, 96742X (15 October 2015); doi: 10.1117/12.2202909
Show Author Affiliations
Haotian Zhou, Wuhan Univ. (China)
Collaborative Innovation Ctr. of Geospatial Technology (China)
Yong Ai, Wuhan Univ. (China)
Collaborative Innovation Ctr. of Geospatial Technology (China)
Chujie Chen, Wuhan Univ. (China)
Collaborative Innovation Ctr. of Geospatial Technology (China)
Yanfei Liu, Wuhan Univ. (China)
Collaborative Innovation Ctr. of Geospatial Technology (China)
Yonghong Dai, Wuhan Univ. (China)
Collaborative Innovation Ctr. of Geospatial Technology (China)
Jing Chen, Wuhan Univ. (China)
Collaborative Innovation Ctr. of Geospatial Technology (China)
Shan Xin, Wuhan Univ. (China)
Collaborative Innovation Ctr. of Geospatial Technology (China)
Hongjun Li, Wuhan Univ. (China)
Collaborative Innovation Ctr. of Geospatial Technology (China)


Published in SPIE Proceedings Vol. 9674:
AOPC 2015: Optical and Optoelectronic Sensing and Imaging Technology
Haimei Gong; Nanjian Wu; Yang Ni; Weibiao Chen; Jin Lu, Editor(s)

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