Publikationen

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Römgens N, Abbassi A, Jonscher C, Grießmann T, Rolfes R. On using autoencoders with non-standardized time series data for damage localization. Engineering structures. 2024 Mär 15;303:117570. Epub 2024 Jan 28. doi: 10.1016/j.engstruct.2024.117570
Abbassi A, Römgens N, Grießmann T, Till J, Rolfes R. Enhancing the Reliability of Structural Health Monitoring for Bolted Joint Connections in Segmented Rotor Blades Using Data Fusion. in Structural health monitoring 2023: Designing SHM for sustainability, maintainability and reliability. DEStech Publications Inc. 2023. S. 1497-1504
Bonilla D, Grießmann T, Rolfes R. Investigation of Transmissibility-Based Operational Modal Analysis from Ground Excitation. in Limongelli MP, Giordano PF, Gentile C, Quqa S, Cigada A, Hrsg., Experimental Vibration Analysis for Civil Engineering Structures : EVACES 2023 . Springer Science and Business Media Deutschland GmbH. 2023. S. 71-79. (Lecture Notes in Civil Engineering). Epub 2023 Aug 2. doi: 10.1007/978-3-031-39109-5_8
Jonscher C, Liesecke L, Penner N, Hofmeister B, Grießmann T, Rolfes R. Influence of system changes on closely spaced modes of a large-scale concrete tower for the application to structural health monitoring. Journal of Civil Structural Health Monitoring. 2023 Jun;13(4-5):1043-1060. Epub 2023 Apr 13. doi: 10.1007/s13349-023-00693-6
Liesecke L, Jonscher C, Grießmann T, Rolfes R. Investigations of Mode Shapes of Closely Spaced Modes from a Lattice Tower Identified Using Stochastic Subspace Identification. in Limongelli MP, Giordano PF, Gentile C, Quqa S, Cigada A, Hrsg., Experimental Vibration Analysis for Civil Engineering Structures. Springer, Cham. 2023. S. 529-538. (Lecture Notes in Civil Engineering). Epub 2023 Aug 2. doi: 10.1007/978-3-031-39109-5_54
Möller S, Jonscher C, Grießmann T, Rolfes R. Investigations Towards Physics-Informed Gaussian Process Regression for the Estimation of Modal Parameters of a Lattice Tower Under Environmental Conditions. in Limongelli MP, Giordano PF, Gentile C, Quqa S, Cigada A, Hrsg., Experimental Vibration Analysis for Civil Engineering Structures: EVACES 2023 - Volume 2. 2023. S. 401–410. (Lecture Notes in Civil Engineering). Epub 2023 Aug 29. doi: 10.1007/978-3-031-39117-0_41
Römgens N, Abbassi A, Jonscher C, Grießmann T, Rolfes R. Unsupervised Damage Localization Using Autoencoders with Time-Series Data. in Limongelli MP, Giordano PF, Gentile C, Quqa S, Cigada A, Hrsg., Experimental Vibration Analysis for Civil Engineering Structures EVACES 2023 - Volume 2. Springer, Cham. 2023. S. 511-519. (Lecture Notes in Civil Engineering). Epub 2023 Aug 29. doi: 10.1007/978-3-031-39117-0_52
Jonscher C, Hofmeister B, Grießmann T, Rolfes R. Influence of Environmental Conditions and Damage on Closely Spaced Modes. in Rizzo P, Milazzo A, Hrsg., European Workshop on Structural Health Monitoring. Band 3. 2022. S. 902-911. (Lecture Notes in Civil Engineering). doi: 10.1007/978-3-031-07322-9_91
Jonscher C, Hofmeister B, Grießmann T, Rolfes R. Optimierte Messkette zur Erfassung tieffrequenter Strukturdynamik. VDI Berichte. 2022;2022(2379):439-450. doi: 10.51202/9783181023792-439
Jonscher C, Hofmeister B, Grießmann T, Rolfes R. Very low frequency IEPE accelerometer calibration and application to a wind energy structure. Wind Energy Science. 2022 Mai 24;7(3):1053-1067. doi: 10.5194/wes-7-1053-2022
Wernitz S, Hofmeister B, Jonscher C, Grießmann T, Rolfes R. A new open‐database benchmark structure for vibration‐based Structural Health Monitoring. Structural Control and Health Monitoring. 2022 Okt 11;29(11):e3077. doi: 10.1002/stc.3077
Bohne T, Grießmann T, Rolfes R. Development of an efficient buoyant jet integral model of a bubble plume coupled with a population dynamics model for bubble breakup and coalescence to predict the transmission loss of a bubble curtain. International Journal of Multiphase Flow. 2020 Nov;132:103436. Epub 2020 Aug 15. doi: 10.1016/j.ijmultiphaseflow.2020.103436
Hofmeister B, Grießmann T, Hübler C, Rolfes R. Schwingungsprognose im modernen urbanen Brettsperrholzbau: Herausforderungen und messdatenbasierte Lösungsansätze. in Berichte der Fachtagung Baustatik: Baupraxis 14, 23. und 24. März 2020. Stuttgart: Universität Stuttgart. 2020. S. 465-472 doi: 10.18419/opus-10762
Penner N, Grießmann T, Rolfes R. Monitoring of suction bucket jackets for offshore wind turbines: Dynamic load bearing behaviour and modelling. Marine structures. 2020 Jul;72:102745. Epub 2020 Mär 20. doi: 10.1016/j.marstruc.2020.102745
Bohne T, Grießmann T, Rolfes R. Modeling the noise mitigation of a bubble curtain. Journal of the Acoustical Society of America. 2019 Okt 4;146(4):2212-2223. doi: 10.1121/1.5126698
Bruns M, Hofmeister B, Grießmann T, Rolfes R. Comparative study of parameterizations for damage localization with finite element model updating. in Beer M, Zio E, Hrsg., Proceedings of the 29th European Safety and Reliability Conference (ESREL): 22-26 September 2019, Hannover, Germany. Europe: Research Publishing Services, Singapore. 2019. S. 1125-1132 doi: 10.3850/978-981-11-2724-3_0713-cd
Hofmeister B, Bruns MT, Grießmann T, Rolfes R. An Inverse Model Reduction Method for Finite Element Model Updating in Structural Health Monitoring. 2019. Wind Energy Science Conference 2019, Cork, Irland. doi: 10.5281/zenodo.3459166
Wernitz S, Pache D, Grießmann T, Rolfes R. Damage localization with SP2E under changing conditions. in Chang F-K, Guemes A, Kopsaftopoulos F, Hrsg., Structural Health Monitoring 2019: Enabling Intelligent Life-Cycle Health Management for Industry Internet of Things (IIOT) - Proceedings of the 12th International Workshop on Structural Health Monitoring. DEStech Publications Inc. 2019. S. 3441-3449 doi: 10.12783/shm2019/32505
Wernitz S, Pache D, Grießmann T, Rolfes R. Performance of an H estimation based damage localization approach in the context of automated structural health monitoring. 2018. Beitrag in 9th European Workshop on Structural Health Monitoring, EWSHM 2018, Manchester, Großbritannien / Vereinigtes Königreich.
Tsiapoki S, Häckell MW, Grießmann T, Rolfes R. Damage and ice detection on wind turbine rotor blades using a three-tier modular structural health monitoring framework. Structural health monitoring. 2017 Okt 11;17(5):1289-1312. doi: 10.1177/1475921717732730