Publikationen des Geodätischen Instituts

Zeige Ergebnisse 61 - 90 von 603

2021


Kermarrec, G., & Hartmann, J. (2021). Characterization of the optical encoder angular noise from terrestrial laser scanners. Optics express, 29(11), 17011-17022. Vorabveröffentlichung online. https://doi.org/10.1364/OE.422735
Kermarrec, G., Schild, N., & Hartmann, J. (2021). Fitting terrestrial laser scanner point clouds with t-splines: Local refinement strategy for rigid body motion. Remote sensing, 13(13), Artikel 2494. Vorabveröffentlichung online. https://doi.org/10.3390/rs13132494
Kermarrec, G., & Lösler, M. (2021). How to account for temporal correlations with a diagonal correlation model in a nonlinear functional model: a plane fitting with simulated and real TLS measurements. Journal of geodesy, 95(1), Artikel 5. Vorabveröffentlichung online. https://doi.org/10.1007/s00190-020-01456-7
Kermarrec, G., Jain, A., & Schon, S. (2021). Kalman filter and correlated measurement noise: the Variance inflation factor. IEEE Transactions on Aerospace and Electronic Systems, 58(2), 766-780. https://doi.org/10.1109/taes.2021.3103564
Kermarrec, G., Schild, N., & Hartmann, J. (2021). Using Least-Squares Residuals to Assess the Stochasticity of Measurements: Example: Terrestrial Laser Scanner and Surface Modeling. Engineering Proceedings, 5(1), Artikel 59. https://doi.org/10.3390/engproc2021005059
Koeva, M., Gasuku, O., Lengoiboni, M., Asiama, K., Bennett, R., Potel, J., & Zevenbergen, J. (2021). Remote sensing for property valuation: A data source comparison in support of fair land taxation in rwanda. Remote Sensing, 13(18), Artikel 3563. https://doi.org/10.3390/rs13183563
Lederman, J. S., Lederman, N. G., Bartels, S., Jimenez, J., Acosta, K., Akubo, M., Aly, S., Andrade, M. A. B. S. D., Atanasova, M., Blanquet, E., Blonder, R., Brown, P., Cardoso, R., Castillo-Urueta, P., Chaipidech, P., Concannon, J., Dogan, O. K., El-Deghaidy, H., Elzorkani, A., ... Wishart, J. (2021). International collaborative follow-up investigation of graduating high school students’ understandings of the nature of scientific inquiry: is progress Being made? International Journal of Science Education, 43(7), 991-1016. https://doi.org/10.1080/09500693.2021.1894500
Moftizadeh, R., Vogel, S., Neumann, I., Bureick, J., & Alkhatib, H. (2021). Information-Based Georeferencing of an Unmanned Aerial Vehicle by Dual State Kalman Filter with Implicit Measurement Equations. Remote sensing, 13(16), Artikel 3205. https://doi.org/10.3390/rs13163205
Moftizadeh, R., Vogel, S., Dorndorf, A., Jungerink, J., & Alkhatib, H. (2021). Information-Based Georeferencing of Multi-Sensor-Systems by Particle Filter with Implicit Measurement Equations. In Proceedings of 2021 IEEE 24th International Conference on Information Fusion, FUSION 2021 Institute of Electrical and Electronics Engineers Inc.. https://ieeexplore.ieee.org/document/9626971
Mohammadi, M., Khami, A., Rottensteiner, F., Neumann, I., & Heipke, C. (2021). MOUNTING CALIBRATION OF A MULTI-VIEW CAMERA SYSTEM ON A UAV PLATFORM. ISPRS Annals of the Photogrammetry, Remote Sensing and Spatial Information Sciences, 5(1), 97–104. https://doi.org/10.5194/isprs-annals-V-1-2021-97-2021
Mohammadivojdan, B., Brockmeyer, M., Jahn, C-H., Neumann, I., & Alkhatib, H. (2021). Regional Ground Movement Detection by Analysis and Modeling PSI Observations. Remote sensing, 13(12), Artikel 2246. https://doi.org/10.3390/rs13122246
Montillet, J-P., Finsterle, W., Kermarrec, G., Haberreiter, M., Sikonja, R., Schmutz, W., & Wit, T. D. D. (2021, Dez 24). Solar Noise in 40-year long Total Solar Irradiance Composite Time Series. https://doi.org/10.1002/essoar.10509712.1
Tent, N., Brad, A., Klöden, J., Hernández, A. A., Bannert, J., & Gebauer, A. (2021). A review of the challenges and strategies of delivering services of general interest in European rural areas. Europa XXI, 41, 77-105. https://doi.org/10.7163/Eu21.2021.41.4
Voß, W., & Ache, P. (2021). Impact of Coronavirus Pandemic on the Property Market and Valuation Purposes. https://fig.net/resources/proceedings/fig_proceedings/fig2021/techprog.htm
Yamaka, W., Alkhatib, H., Neumann, I., & Kreinovich, V. (2021). Why LASSO, Ridge Regression, and EN: Explanation Based on Soft Computing. In N. Ngoc Thach, D. T. Ha, N. D. Trung, & V. Kreinovich (Hrsg.), Prediction and Causality in Econometrics and Related Topics (S. 123-130). (Studies in Computational Intelligence; Band 983). Springer. https://doi.org/10.1007/978-3-030-77094-5_12
Ying, Y., Koeva, M., Kuffer, M., Asiama, K., Li, X., & Zevenbergen, J. (2021). Making the Third Dimension (3D) Explicit in Hedonic Price Modelling: A Case Study of Xi’an, China. Land Use Policy, 10(1), Artikel 24. Vorabveröffentlichung online. https://doi.org/10.3390/land10010024

2020


Abdelaal, M., & Schön, S. (2020). Predictive Path Following and Collision Avoidance of Autonomous Connected Vehicles. Algorithms, 13(3), Artikel 52. https://doi.org/10.3390/a13030052
Ache, P., Voß, W., & Krägenbring, R. (2020). Immobilienmarkt - Auswirkungen der Corona-Pandemie. Grundstücksmarkt und Grundstückswert (GuG), 2020(6), 1 - 10.
Alkhatib, H. (2020). Fortgeschrittene Methoden und Algorithmen für die computergestützte geodätische Datenanalyse. [Habilitationsschrift, Gottfried Wilhelm Leibniz Universität Hannover]. Leibniz Universität Hannover. https://doi.org/10.15488/10342
Alkhatib, H., Neumann, I., Kreinovich, V., & Van Le, C. (2020). Why LASSO, EN, and CLOT: Invariance-Based Explanation. In Data Science for Financial Econometrics (S. 37-50). (Studies in Computational Intelligence; Band 898). Springer Science and Business Media Deutschland GmbH. https://doi.org/10.1007/978-3-030-48853-6_2
Asiama, K., & Voß, W. (2020). Conceptualising the Valuation of 3D Property. https://fig.net/fig2020/technical_program.htm
Bureick, J. (2020). Robuste Approximation von Laserscan-Profilen mit B-Spline-Kurven. [Dissertation, Gottfried Wilhelm Leibniz Universität Hannover]. Leibniz Universität Hannover. https://publikationen.badw.de/en/046782595/pdf/CC%20BY
Bureick, J. (2020). Robuste Approximation von Laserscan-Profilen mit B-Spline-Kurven. (Geodätische Kommission bei der Bayerischen Akademie der Wissenschaften. Reihe C, Dissertationen; Band C, Nr. 852). Verlag der Bayerischen Akademie der Wissenschaften. https://publikationen.badw.de/en/046782595/pdf/CC%20BY
Hake, F., Hermann, M., Alkhatib, H., Hesse, C., Holste, K., Umlauf, G., Kermarrec, G., & Neumann, I. (2020). Damage Detection for Port Infrastructure by Means of Machine-Learning-Algorithms. Beitrag in FIG Working Week 2020, Amsterdam, Niederlande. Vorabveröffentlichung online. https://www.fig.net/resources/proceedings/fig_proceedings/fig2020/papers/ts08b/TS08B_hake_alkhatib_et_al_10441.pdf
Hesse, C., Krause, N. L., Frenz, M., Neumann, I., Hake, F., & Paffenholz, J-A. (2020). Kinematisches Laserscanning zur statischen Bewertung großer Brückenbauwerke. In Tagungsband GeoMonitoring 2020 (S. 65 - 78) https://doi.org/10.15488/9341
Kargoll, B., Omidalizarandi, M., & Alkhatib, H. (2020). Adjustment of Gauss-Helmert Models with Autoregressive and Student Errors. In P. Novák, M. Crespi, N. Sneeuw, & F. Sansò (Hrsg.), 9th Hotine-Marussi Symposium on Mathematical Geodesy: Proceedings of the Symposium in Rome, 2018 (S. 79-87). (International Association of Geodesy Symposia; Band 151). Springer, Cham. https://doi.org/10.1007/1345_2019_82
Kargoll, B., Kermarrec, G., Korte, J., & Alkhatib, H. (2020). Self-tuning robust adjustment within multivariate regression time series models with vector-autoregressive random errors. Journal of Geodesy, 94(5), Artikel 51. https://doi.org/10.1007/s00190-020-01376-6
Kermarrec, G., Kargoll, B., & Alkhatib, H. (2020). Deformation Analysis Using B-Spline Surface with Correlated Terrestrial Laser Scanner Observations—A Bridge Under Load. Remote sensing, 12(5), Artikel 829. https://doi.org/10.3390/rs12050829
Kermarrec, G. (2020). On Estimating the Hurst Parameter from Least-Squares Residuals. Case Study: Correlated Terrestrial Laser Scanner Range Noise. Mathematics, 8(5), Artikel 674. https://doi.org/10.3390/MATH8050674
Kermarrec, G., & Alkhatib, H. (2020). On the BIC for determining the number of control points in B-spline surface approximation in case of correlated observations. Journal of Geodetic Science, 10(1), 110-123. https://doi.org/10.1515/jogs-2020-0110