2017
DOI: 10.1007/s13272-017-0240-9
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In-flight remote sensing and identification of gusts, turbulence, and wake vortices using a Doppler LIDAR

Abstract: In this paper, in-flight remote sensing technologies are considered for two applications: active load alleviation of gust and turbulence and wake impact alleviation. The paper outlines the strong commonalities in terms of sensors and measurement post-processing algorithms and presents also the few differences and their consequences in terms of postprocessing. The way the post-processing is being made is detailed before showing results for both applications based on a complete and coupled simulation (aircraft r… Show more

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Cited by 28 publications
(31 citation statements)
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“…The wind reconstruction process is closely related to the process shown in [6] for the identification of wake vortices. The strong commonalities as well as the existing differences between these two applications are described in [11,12]. In the next sections, the free-form wind field model and the formulation of the maximum-likelihood wind reconstruction problem are only briefly reminded and the readers are referred to [12] for the details and for the wind reconstruction results.…”
Section: Overview Of the Wind Reconstruction Algorithmmentioning
confidence: 99%
See 4 more Smart Citations
“…The wind reconstruction process is closely related to the process shown in [6] for the identification of wake vortices. The strong commonalities as well as the existing differences between these two applications are described in [11,12]. In the next sections, the free-form wind field model and the formulation of the maximum-likelihood wind reconstruction problem are only briefly reminded and the readers are referred to [12] for the details and for the wind reconstruction results.…”
Section: Overview Of the Wind Reconstruction Algorithmmentioning
confidence: 99%
“…The strong commonalities as well as the existing differences between these two applications are described in [11,12]. In the next sections, the free-form wind field model and the formulation of the maximum-likelihood wind reconstruction problem are only briefly reminded and the readers are referred to [12] for the details and for the wind reconstruction results. Significant performance improvements of the wind reconstruction algorithm could be obtained in terms of computation time compared to the version used in [12] by exploiting the linear least-squares structure of the problem.…”
Section: Overview Of the Wind Reconstruction Algorithmmentioning
confidence: 99%
See 3 more Smart Citations