Articles | Volume 15
https://doi.org/10.5194/ars-15-1-2017
https://doi.org/10.5194/ars-15-1-2017
21 Sep 2017
 | 21 Sep 2017

Experimentelles FMCW-Radar zur hochfrequenten Charakterisierung von Windenergieanlagen

Karsten Schubert, Jens Werner, and Fabian Schwartau

Related authors

A novel Technique for Improving the Angular Accuracy of Doppler VOR Receivers
Karsten Schubert, Jens Werner, and Jens Wellhausen
Adv. Radio Sci., 19, 1–7, https://doi.org/10.5194/ars-19-1-2021,https://doi.org/10.5194/ars-19-1-2021, 2021
Short summary

Cited articles

Jankiraman, M.: Design of multi-frequency CW Radars, SciTech Publishing, 1. Auflage, 2007.
Keränen, R., Alku, L. C., Pettazzi, A., and Salsón, S.: Weather Radar and Abundant Wind Farming – Impacts on Data Quality and Mitigation by Doppler Dual-Polarization, in: ERAD 2014 – THE EIGHTH EUROPEAN CONFERENCE ON RADAR IN METEOROLOGY AND HYDROLOGY, 2014.
Lüers, S. and Rehfeldt, K.: Status des Windenergieausbaus an Land in Deutschland – 1. Halbjahr 2016, Deutsche WindGuard GmbH, 2016.
Mini-Circuits: Voltage Controlled Oscillator ZX95-3050C+, https://www.minicircuits.com/pdfs/ZX95-3050C+.pdf (letzter Zugriff: 23. April 2017), 2005.
Schrader, T., Bredemeyer, J., Stupperich, C. und Garbe, H.: WERAN – Interaction of Wind Turbines with Terrestrial Navigation/Radar Systems, 2015 IEEE International Symposium on Electromagnetic Compatibility (EMC), WS14 Unmanned Aircraft Systems – EMC and Applications, Dresden, Germany, 16–22 August, 2015.
Download
Short summary
A cost-effective and universal FMCW radar is developed for the RF characterisation of wind turbine plants. This radar is modular and can be easily adapted for different measurement tasks. A long-term goal is to investigate high-frequency characteristics of wind turbines at different locations by their Doppler spectrum. The results obtained will be used to derive a statistical model.