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Foundations for innovative applicati...
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Nekrasov, Alexey.
Foundations for innovative application of airborne radarsfunctionality enhancement for measuring the water surface backscattering signature and wind /
Record Type:
Electronic resources : Monograph/item
Title/Author:
Foundations for innovative application of airborne radarsby Alexey Nekrasov.
Reminder of title:
functionality enhancement for measuring the water surface backscattering signature and wind /
Author:
Nekrasov, Alexey.
Published:
Cham :Springer International Publishing :2021.
Description:
xviii, 113 p. :ill., digital ;24 cm.
Contained By:
Springer Nature eBook
Subject:
WindsSpeed
Online resource:
https://doi.org/10.1007/978-3-030-62942-7
ISBN:
9783030629427$q(electronic bk.)
Foundations for innovative application of airborne radarsfunctionality enhancement for measuring the water surface backscattering signature and wind /
Nekrasov, Alexey.
Foundations for innovative application of airborne radars
functionality enhancement for measuring the water surface backscattering signature and wind /[electronic resource] :by Alexey Nekrasov. - Second edition. - Cham :Springer International Publishing :2021. - xviii, 113 p. :ill., digital ;24 cm. - SpringerBriefs in earth sciences,2191-5369. - SpringerBriefs in earth sciences..
Introduction -- Water Surface Backscattering and Wind Retrieval -- FM-CW Demonstrator System as an Instrument for Measuring Sea Surface Backscattering Signature and Wind -- Doppler Navigation System Application for Measuring Backscattering Signature and Wind Over Water -- Measuring Water Surface Backscattering Signature and Wind by Means of Airborne Weather Radar -- Water-Surface Wind Retrieval Using Airborne Radar Altimeter.
This book discusses methods for measuring the water surface backscattering signature and estimating the near-surface wind vector over water using airborne radars, in addition to their standard application. Airborne FMCW demonstrator system, Doppler navigation system, airborne weather radar, airborne radar altimeter, and airborne precipitation radar are analyzed in order to be used for that purpose. The radars functionality is enhanced for their operation in a scatterometer mode. A circle flight and/or a rectilinear flight of an aircraft over the water surface is considered depending on the radar design features to perform measurements of the azimuth normalized radar cross section curve of the water surface and/or the near-surface wind speed and direction. Flight recommendations to perform measurements along with algorithms for measuring the water surface backscattering signature and for retrieval of the wind speed and direction over water are presented.
ISBN: 9783030629427$q(electronic bk.)
Standard No.: 10.1007/978-3-030-62942-7doiSubjects--Topical Terms:
675904
Winds
--Speed
LC Class. No.: QC933 / .N457 2021
Dewey Class. No.: 551.5180285
Foundations for innovative application of airborne radarsfunctionality enhancement for measuring the water surface backscattering signature and wind /
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Foundations for innovative application of airborne radars
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functionality enhancement for measuring the water surface backscattering signature and wind /
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by Alexey Nekrasov.
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Imprint: Springer,
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2021.
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xviii, 113 p. :
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ill., digital ;
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SpringerBriefs in earth sciences,
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2191-5369
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Introduction -- Water Surface Backscattering and Wind Retrieval -- FM-CW Demonstrator System as an Instrument for Measuring Sea Surface Backscattering Signature and Wind -- Doppler Navigation System Application for Measuring Backscattering Signature and Wind Over Water -- Measuring Water Surface Backscattering Signature and Wind by Means of Airborne Weather Radar -- Water-Surface Wind Retrieval Using Airborne Radar Altimeter.
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This book discusses methods for measuring the water surface backscattering signature and estimating the near-surface wind vector over water using airborne radars, in addition to their standard application. Airborne FMCW demonstrator system, Doppler navigation system, airborne weather radar, airborne radar altimeter, and airborne precipitation radar are analyzed in order to be used for that purpose. The radars functionality is enhanced for their operation in a scatterometer mode. A circle flight and/or a rectilinear flight of an aircraft over the water surface is considered depending on the radar design features to perform measurements of the azimuth normalized radar cross section curve of the water surface and/or the near-surface wind speed and direction. Flight recommendations to perform measurements along with algorithms for measuring the water surface backscattering signature and for retrieval of the wind speed and direction over water are presented.
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Winds
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Speed
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Radar in aeronautics.
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Bodies of water
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https://doi.org/10.1007/978-3-030-62942-7
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Earth and Environmental Science (SpringerNature-11646)
based on 0 review(s)
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電子館藏
1圖書
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EB QC933 .N418 2021 2021
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1 records • Pages 1 •
1
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https://doi.org/10.1007/978-3-030-62942-7
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