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A Miniature Robotic Plane Meteorological Sounding System 被引量:1

A Miniature Robotic Plane Meteorological Sounding System
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摘要 This article presents a miniature robotic plane meteorological sounding system (RPMSS), which consists of three major subsystems: a miniature robotic plane, an air-borne meteorological sounding and ?ight control system, and a ground-based system. Take-o? and landing of the miniature aircraft are guided by radio control, and the ?ight of the robotic plane along a pre-designed trajectory is automatically piloted by an onboard navigation system. The observed meteorological data as well as all ?ight information are sent back in real time to the ground, then displayed and recorded by the ground-based computer. The ground-based subsystem can also transmit instructions to the air-borne control subsystem. Good system performance has been demonstrated by more than 300 hours of ?ight for atmospheric sounding. This article presents a miniature robotic plane meteorological sounding system (RPMSS), which consists of three major subsystems: a miniature robotic plane, an air-borne meteorological sounding and ?ight control system, and a ground-based system. Take-o? and landing of the miniature aircraft are guided by radio control, and the ?ight of the robotic plane along a pre-designed trajectory is automatically piloted by an onboard navigation system. The observed meteorological data as well as all ?ight information are sent back in real time to the ground, then displayed and recorded by the ground-based computer. The ground-based subsystem can also transmit instructions to the air-borne control subsystem. Good system performance has been demonstrated by more than 300 hours of ?ight for atmospheric sounding.
出处 《Advances in Atmospheric Sciences》 SCIE CAS CSCD 2004年第6期890-896,共7页 大气科学进展(英文版)
基金 the China Meteorology Administration the China Natural Natural Science Foundation under Grant Nos.49975010,49790020-6.
关键词 miniature Unmanned Aerial Vehicle atmospheric sounding Flight test miniature Unmanned Aerial Vehicle atmospheric sounding Flight test
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  • 1[1]Holland, G: J., T. McGeer, and H. Youngren, 1992:Autonomous aerosondes for economical atmospheric soundings anywhere on the globe. Bull. Amer. Meteor. Soc., 73(12), 1987-1998.
  • 2[2]Holland, G. J., and Coauthors, 2001: The Aerosonde robotic aircraft: A new paradigm for environmental observations. Bull. Amer. Meteor. Soc., 82(5), 889-901.
  • 3[3]Junkermann, W., 2001: An ultralight aircraft as platform for research in the lower troposphere: System performance and first results from radiation transfer studies in stratiform aerosol layers and broken cloud conditions. J. Atmos. Oceanic. Technol., 18, 934-946.
  • 4[4]Ma Shuqing, Wang Gai, and Pan Yi, 1997: Preliminary experiments of atmospheric sounding using Mini Unmanned Air Vehicle. Journal of Nanjing Meteorology Institute, 20(2), 171-177. (in Chinese)
  • 5[5]Ma Shuqing, Wang Gai, Pan Yi, and Wang Ling, 1999: An analytical method for wind measurement using miniature aircraft. Chinese J. Atmos. Sci., 23(2), 202-208.
  • 6[6]Marenco, A., and Coauthors, 1998: Measurement of ozone and water vapor by airbus in-service aircraft: The MOZAIC airborne program, an overview. J. Geophys.Res., 103(D19), 25631-25642.
  • 7[7]Moninger, W. R., R. D. Mamrosh, and P. M. Pauley, 2003:Automated meteorological reports from commercial aircraft. Bull. Amer. Meteor. Soc., 84(2), 203-216.
  • 8[8]Scott, S. G., T. P. Bui, and K. R. Chan, 1990: The meteorological measurement system on the NASA ER-2aircraft. J. Atmos. Oceanic. Technol., 7(4), 525-540.

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