TY - GEN
T1 - The analysis of signal-to-noise ratio of airborne LIDAR system under state of motion
AU - Hao, Huang
AU - Lan, Tian
AU - Zhang, Yingchao
AU - Ni, Guoqiang
PY - 2010
Y1 - 2010
N2 - This article gives an overview of airborne LIDAR (laser light detection and ranging) system and its application. By analyzing the transmission and reception process of laser signal, the article constructs a model of echo signal of the LIDAR system, and gives some basic formulas which make up the relationship of signal-to-noise ratio, for example, the received power, the dark noise power and so on. And this article carefully studies and analyzes the impact of some important parameters in the equation on the signal-to-noise ratio, such as the atmospheric transmittance coefficient, the work distance. And the matlab software is used to simulate the detection environment, and obtains a series values of signal-to-noise (SNR) ratio under different circumstances such as sunny day, cloudy day, day, night. And the figures which describe how the SNR of LIDAR system is influenced by the critical factors are shown in the article. Finally according to the series values of signal-to-noise ratio and the figures, the SNR of LIDAR system decreases as the distance increases, and the atmospheric transmittance coefficient caused by bad weather, and also high work temperature drops the SNR. Depending on these conclusions, the LIDAR system will work even better.
AB - This article gives an overview of airborne LIDAR (laser light detection and ranging) system and its application. By analyzing the transmission and reception process of laser signal, the article constructs a model of echo signal of the LIDAR system, and gives some basic formulas which make up the relationship of signal-to-noise ratio, for example, the received power, the dark noise power and so on. And this article carefully studies and analyzes the impact of some important parameters in the equation on the signal-to-noise ratio, such as the atmospheric transmittance coefficient, the work distance. And the matlab software is used to simulate the detection environment, and obtains a series values of signal-to-noise (SNR) ratio under different circumstances such as sunny day, cloudy day, day, night. And the figures which describe how the SNR of LIDAR system is influenced by the critical factors are shown in the article. Finally according to the series values of signal-to-noise ratio and the figures, the SNR of LIDAR system decreases as the distance increases, and the atmospheric transmittance coefficient caused by bad weather, and also high work temperature drops the SNR. Depending on these conclusions, the LIDAR system will work even better.
KW - airborne LIDAR system
KW - echo signal
KW - optimization
KW - signal-to-noise ratio
KW - system simulation
UR - http://www.scopus.com/inward/record.url?scp=78650779888&partnerID=8YFLogxK
U2 - 10.1117/12.869967
DO - 10.1117/12.869967
M3 - Conference contribution
AN - SCOPUS:78650779888
SN - 9780819483737
T3 - Proceedings of SPIE - The International Society for Optical Engineering
BT - High-Power Lasers and Applications V
T2 - High-Power Lasers and Applications V
Y2 - 18 October 2010 through 19 October 2010
ER -