Performance Evaluation of an Airborne Coherent Doppler Lidar and Investigation of Its Practical Application
Author:
Affiliation:
1. Japan Aerospace Exploration Agency
2. Mitsubishi Electric Corporation
Publisher
Japan Society for Aeronautical and Space Sciences
Subject
Space and Planetary Science,Aerospace Engineering
Link
https://www.jstage.jst.go.jp/article/tjsass/65/2/65_T-20-35/_pdf
Reference27 articles.
1. 1) The Japan Transport Safety Board: http://www.mlit.go.jp/jtsb/, 2019.
2. 2) Bilbro, J. W. and Vaughan, W. W.: Wind Field Measurement in the Nonprecipitous Regions Surrounding Severe Storms by an Airborne Pulsed Doppler Lidar System, Bull. Am. Meteorol. Soc., 59, 9 (1978), pp. 1095–1101.
3. 3) Bilbro, J., Fichtl, G., Fitzjarrald, D., Krause, M., and Lee, R.: Airborne Doppler Lidar Wind Field Measurements, Bull. Am. Meteorol. Soc., 65, 4 (1984), pp. 348–359.
4. 4) Bilbro, J. W., DiMarzio, C., Fitzjarrald, D., Johnson, S., and Jones, W.: Airborne Doppler Lidar Measurements, Appl. Opt., 25, 21 (1986), pp. 3952–3960.
5. 5) Targ, R., Steakley, B. C., Hawley, J. G., Ames, L. L., Forney, P., Swanson, D., Stone, R., Otto, R. G., Zarifis, V., Brockman, P., Calloway, R. S., Klein, S. H., and Robinson, P. A.: Coherent Lidar Airborne Wind Sensor II: Flight-test Results at 2 and 10 µm, Appl. Opt., 35 (1996), pp. 7117–7127.
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