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April 16, 20260 citations

Aeolus validation with the DLR airborne Doppler wind lidars: 2-µm heterodyne detection and 355 nm ALADIN Demonstrator

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CLChristian LemmerzOLOliver LuxBWBenjamin Witschas

Key Points

  • This research aims to validate ESA's Aeolus wind lidar mission by comparing airborne Doppler measurements.
  • Conducted four airborne validation campaigns over three years
  • Utilized DLR Falcon aircraft equipped with two Doppler wind lidar instruments
  • Monitored over 26,000 km along the Aeolus measurement track
  • Characterized wind errors using data from different operational scenarios
  • Validated reprocessed Aeolus wind products and recommended algorithm enhancements
  • Identified both systematic and random wind errors
  • Collected complementary data from campaigns in Iceland and Cape Verde

Abstract

In the three years after the launch of ESA's wind lidar mission Aeolus in 2018, DLR conducted four airborne campaigns to validate its wind products. The DLR Falcon aircraft was equipped with two Doppler wind lidar (DWL) instruments, the ALADIN Airborne Demonstrator (A2D), the prototype of the Aeolus instrument, and a scanning heterodyne detection 2-µm DWL as a reference system. These instruments were operated concurrently for over 26,000 km along the Aeolus measurement track. Complementary and synergistic observations from both DWLs were used to characterize systematic and random wind errors of the Aeolus products, and to recommend algorithm improvements. Recently, the data obtained from campaigns in Iceland (2019) and Cape Verde (2021) was applied to validate reprocessed Aeolus wind products (Baseline 16). This paper provides an overview of the airborne validation campaigns and ongoing contributions to the Aeolus performance validation and processor evolution.

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Cite This Study

Lemmerz et al. (2026) studied this question.

synapsesocial.com/papers/69e07e242f7e8953b7cbf222https://doi.org/10.1051/epjconf/202636211005/pdf
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Verification of different peak centroid analysis algorithms based on airborne wind lidar data in support of ESA's Aeolus mission2026
  2. 2Long-Term Validation of Aeolus Wind Products in the Brazilian Amazon2024
  3. 3Aeolus-2: Status of pre-development activities2026
  4. 4CCD detector performance of the space-borne Doppler wind lidar ALADIN during the Aeolus mission2024 · 3 citations
  5. 5Challenges and achievements of the first wind lidar in space on ESA's Aeolus mission2026