Analytical volume model for optimized spatial radar bat detection in onshore wind parks

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Kreutzfeldt, J.; Floeter, C.; Lingner, T.; Schmitz-Beuting, L.; Reich, M. et al.: Analytical volume model for optimized spatial radar bat detection in onshore wind parks. In: PLoS ONE 15 (2020), Nr. 9, e0239911. DOI: https://doi.org/10.1371/journal.pone.0239911

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To cite the version in the repository, please use this identifier: https://doi.org/10.15488/12636

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Sum total of downloads: 71




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Abstract: 
To develop mitigation measures for the protection of bats in close proximity to onshore wind turbines, new detection techniques covering large-scale environments and techniques, which are able to track individuals are required. Radar based observations, successfully applied in ornithological studies, offer a promising potential, but come with challenges regarding the comparability of measurements and noise interference (ground clutter) from objects within detection range. This paper presents improvements of a commercially available inexpensive pulse radar for 3D spatial detection of bat-sized objects in onshore wind parks. A new analytical spatial detection volume model is presented incorporating calibrated radar data and landscape parameters such as clutter. Computer simulation programs to process the analytical spatial detection volume model were developed. For model calibration, the minimum signal power of the radar was experimentally determined with the radar cross section (RCS) of an artificial bat (similar to Nyctalus noctula), resulting in a maximum detection range of 800 m and a corresponding RCS of 12.7 cm2. Additionally, the spatial volume for radar detection was optimized with a clutter shielding fence (CSF). Adjusting the volume model by incorporating a theoretical model of the CSF, an extension of the detection volume by a factor of 2.5 was achieved, while the total volume of a 105o horizontal angular radar image section yields 0.0105 km3. Extrapolation and comparison with state-of-the-art acoustic bat detection result in a 270 times larger volume, confirming the large-scale detection capabilities of the pulse radar.
License of this version: CC BY 4.0 Unported
Document Type: Article
Publishing status: publishedVersion
Issue Date: 2020
Appears in Collections:Fakultät für Architektur und Landschaft

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pos. country downloads
total perc.
1 image of flag of Germany Germany 24 33.80%
2 image of flag of United States United States 15 21.13%
3 image of flag of Russian Federation Russian Federation 12 16.90%
4 image of flag of Czech Republic Czech Republic 8 11.27%
5 image of flag of China China 3 4.23%
6 image of flag of No geo information available No geo information available 2 2.82%
7 image of flag of Taiwan Taiwan 1 1.41%
8 image of flag of Israel Israel 1 1.41%
9 image of flag of Indonesia Indonesia 1 1.41%
10 image of flag of France France 1 1.41%
    other countries 3 4.23%

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