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Fachgebiet
- Bojenbasierte LiDAR Messungen und Simulation zur Offshore-Windfeldvermessung
- LiDAR Messungen und Simulationen zur Lastuntersuchung von Windenergieanlagen
2022
- Pérez, M Gil, C Zechmeister, F Kannenberg, P Mindermann, L Balangé, Y Guo, S Hügle, u. a. 2022. Computational co-design framework for coreless wound fibre–polymer composite structures. Journal of Computational Design and Engineering 9, Nr. 2. Journal of Computational Design and Engineering (Februar): 310--329. doi:10.1093/jcde/qwab081, https://doi.org/10.1093%2Fjcde%2Fqwab081.
- Pérez, M Gil, C Zechmeister, F Kannenberg, P Mindermann, L Balangé, Y Guo, S Hügle, u. a. 2022. Computational co-design framework for coreless wound fibre–polymer composite structures. Journal of Computational Design and Engineering 9, Nr. 2. Journal of Computational Design and Engineering (Februar): 310--329. doi:10.1093/jcde/qwab081, https://doi.org/10.1093%2Fjcde%2Fqwab081.
- Pérez, M Gil, C Zechmeister, F Kannenberg, P Mindermann, L Balangé, Y Guo, S Hügle, u. a. 2022. Computational co-design framework for coreless wound fibre–polymer composite structures. Journal of Computational Design and Engineering 9, Nr. 2. Journal of Computational Design and Engineering (Februar): 310--329. doi:10.1093/jcde/qwab081, https://doi.org/10.1093%2Fjcde%2Fqwab081.
- Bischoff, Oliver, Gerrit Wolken-Möhlmann und Po Wen Cheng. 2022. An approach and discussion of a simulation based measurement uncertainty estimation for a floating lidar system. Journal of Physics: Conference Series 2265, Nr. 2. Journal of Physics: Conference Series (Juni): 022077. doi:10.1088/1742-6596/2265/2/022077, .
2021
- Bischoff, O., G. Wolken-Möhlmann und P. W. Cheng. 2021. Presentation and validation of a simulation environment for floating lidar systems. Journal of Physics: Conference Series 2018, Nr. 1. Journal of Physics: Conference Series (Januar): 012009. doi:10.1088/1742-6596/2018/1/012009, .
2019
- Bischoff, Oliver. 2019. Sensitivity analysis of the measurement performance of floating lidar systems for different meteorological parameters. Wind Energy Science Conference 2019. Wind Energy Science Conference 2019. Cork. doi:10.5281/zenodo.3560934, .
- Lemmer, Frank, Christoph Fröhlich, Oliver Bischoff, Po Wen Cheng und L. Eca. 2019. Modelling uncertainty in the validation of the hydrodynamics of a floating offshore wind turbine. In: Proceedings of the WESC 2019. Proceedings of the WESC 2019. doi:10.5281/zenodo.3362240, .
2018
- Yu, W., O. Bischoff, P. W. Cheng, G. Wolken-Moehlmann und J. Gottschall. 2018. Validation of a simplified LiDAR-buoy model using open sea measurements. ASME 2018 1st International Offshore 2018. ASME 2018 1st International Offshore 2018. San Francisco, USA, November.
- Bischoff, O., W. Yu, J. Gottschall und P. W. Cheng. 2018. Validating a simulation environment for floating lidar systems. Journal of Physics: Conference Series 1037. Journal of Physics: Conference Series: 052036. doi:10.1088/1742-6596/1037/5/052036, .
2017
- Bischoff, O., I. Würth, J. Gottschall, B. Gribben, D. Stein, J. Hughes und H. Verhoef. 2017. Towards Recommended Practices for Floating Lidar Systems. EERA DeepWind 2017 Deep Sea 2017. EERA DeepWind 2017 Deep Sea 2017. Trondheim, Norway, Januar.
2015
- Gutierrez, M. A., J. Tiana-Alsina, O. Bischoff, J. Cateura und F. Rocadenbosch. 2015. Performance evaluation of a floating Doppler wind lidar buoy in mediterranean near-shore conditions. International Geoscience and Remote Sensing 2015. International Geoscience and Remote Sensing 2015. Milan, Italy, November.
- Bischoff, O., D. Schlipf, I. Würth und P. W. Cheng. 2015. Dynamic Motion Effects and Compensation Methods of a Floating Lidar Buoy. EERA DeepWind 2015 Deep Sea Offshore Wind Conference. EERA DeepWind 2015 Deep Sea Offshore Wind Conference. Trondheim, Norway, Februar.
2014
- Bischoff, O., Ines Würth, Po Wen Cheng, J. Tiana Alsina und M. A. Gutierrez. 2014. Motion effects on lidar wind measurement data of the EOLOS buoy. RENEW. RENEW. Lisbon, Portugal, November.
2012
- Rettenmeier, Andreas, J. Anger, O. Bischoff, Martin Hofsäß, David Schlipf, Ines Würth und Po Wen Cheng. 2012. Development of Lidar wind measurement techniques. RAVE International Conference. RAVE International Conference. Bremerhaven, Mai.
- Schlipf, David, J. Anger, O. Bischoff, Martin Hofsäß, Andreas Rettenmeier, Ines Würth, Siegmeier und Po Wen Cheng. 2012. Lidar Assisted Wind Turbine Control. RAVE International Conference. RAVE International Conference. Bremerhaven, Mai.
- Rettenmeier, Andreas, J. Anger, O. Bischoff, Martin Hofsäß, David Schlipf und Ines Würth. 2012. Nacelle-Based Lidar Systems. Summer School:Remote Sensing for Wind Energy. Summer School:Remote Sensing for Wind Energy. Juni.
- Schuon, F., D. González, F. Rocadenbosch, O. Bischoff und R. Jané. 2012. KIC InnoEnergy Project Neptune: development of a floating LiDAR buoy for wind, wave and current measurements. German Wind Energy Conference 2012. German Wind Energy Conference 2012. Bremen, November.
2011
- Bischoff, O., M. Hofsäß und P. W. Cheng. 2011. Wind turbine simulation in flat and complex terrain using generic wind fields based on lidar and sonic measurement data. European Wind Energy Association Annual Conference and Exhibition 2015, EWEA 2015. European Wind Energy Association Annual Conference and Exhibition 2015, EWEA 2015. Paris, France, November.
Betreuung von studentischen Abschlussarbeiten in den Bereichen
- Lidar-Messtechnik
- Schwimmende Lidarsysteme
- Simulation von Windenergieanlagen
- Lidar im komplexen Gelände
2007 | Diplom im Studiengang "Luft- und Raumfahrttechnik", Universität Stuttgart |
seit 02/2008 | Wissenschaftlicher Mitarbeiter am Stuttgarter Lehrstuhl für Windenergie |
- Leitung des aktuellen Forschungsprojektes NEOWIND
- Mitarbeit im aktuellen Forschunsgprojekt LoTar
- Betreuung des internationalen Trainings- und Forschungsnetzwerkes FLOAWER
- Leitung des abgeschlossenen Forschungsprojektes MALIBU
- Leitung des abgeschlossenen Forschungsprojektes NEPTUNE
- Mitarbeit im abgeschlossenen Forschungsprojekt Lidar complex