M. Sc.

Julia Wagner

Wissenschaftliche Mitarbeiterin
Institut für Systemdynamik

Contact

+49 711 685-69904

Waldburgstr. 17/19
70563 Stuttgart
Deutschland

Subject

Beteiligt an Teilprojekten, inklusive Position:

B04 Steuerungs- und Regelungskonzepte für adaptive Bauwerke, Projektbearbeiter

  1. 2020

    1. A. Ostertag et al., “Reliable Design of Adaptive Load-bearing Structures with Focus on Sustainability,” 2020.
    2. J. L. Wagner et al., “Optimal Static Load Compensation with Fault Tolerance in Nonlinear Adaptive Structures under Input and State Constraints,” Frontiers in Built Environment, 2020.
    3. J. L. Wagner, M. Bohm, and O. Sawodny, “Decentralized structural control using Craig-Bampton reduction and local controller design,” in 2020 IEEE International Conference on Industrial Technology (ICIT), Buenos Aires, Argentina, 2020, pp. 41--46, doi: 10.1109/ICIT45562.2020.9067158.
    4. J. L. Wagner, M. Böhm, and O. Sawodny, “Decentralized Control Design for Adaptive Structures with Tension-only Elements,” 2020.
    5. A. Warsewa, J. L. Wagner, M. Böhm, O. Sawodny, and C. Tarín, “Networked Decentralized Control for Adaptive Structures,” Journal of Communications, 2020.
    6. A. Warsewa et al., “Self-tuning state estimation for adaptive truss structures using strain gauges and camera-based position measurements,” Mechanical Systems and Signal Processing, 2020, doi: 10.1016/j.ymssp.2020.106822.
    7. A. Warsewa, J. L. Wagner, M. Böhm, O. Sawodny, and C. Tarìn, “Networked Decentralized Control for Adaptive Structures,” 2020.
  2. 2019

    1. M. Böhm, J. Wagner, S. Steffen, W. Sobek, and O. Sawodny, “Homogenizability of Element Utilization in Adaptive Structures,” 2019.
    2. B. Fröhlich, J. Wagner, M. Böhm, O. Sawodny, and P. Eberhard, “Combining Optimal Control and Shape Optimization for an Adaptive Engineering Structure with Parameterized Reduced Order Finite Element Models,” 2019.
    3. B. Fröhlich, J. L. Wagner, M. Böhm, O. Sawodny, and P. Eberhard, “Combining Optimal Control and Shape Optimization for an Adaptive Engineering Structure with Parametrized Reduced Order Finite Element Models,” 2019.
    4. J. L. Wagner, M. Böhm, and O. Sawodny, “Nonlinear Modeling and control of Tension-only Elements in Adaptive Structures,” 2019.
    5. J. L. Wagner, K. Schmidt, M. Böhm, and O. Sawodny, “Optimal Actuator Placement and Static Load Compensation for Euler-Bernoulli Beams with Spatially Distributed Inputs,” 2019.
    6. S. Weidner et al., “The integration of actuation concepts and adaptive elements into an experimental high-rise building,” 2019.
  3. 2018

    1. J. Wagner et al., “On steady-state disturbance compensability for actuator placement in adaptive structures,” at - Automatisierungstechnik, 2018.
    2. J. Wagner, “Energie als Baustoff - Automatisierung adaptiver Tragwerke,” 2018.
    3. J. L. Wagner, M. Böhm, and O. Sawodny, “Model-based control of integrated fluidic actuators for adaptive structures,” 2018.
    4. S. Weidner et al., “The implementation of adaptive elements into an experimental high-rise building,” Steel Construction, 2018.
  4. 2017

    1. J. Wagner, M. Heidingsfeld, M. Böhm, and O. Sawodny, “Gramian-based actuator placement for static load compensation in adaptive structures,” 2017.

Medizintechnik (2011 – 2017), Spezialisierungsfächer Systemdynamik sowie Digitale Signalverarbeitung, Universität Stuttgart, Abschluss: M.Sc.

Seit 2017, wissenschaftliche Mitarbeiterin am Institut für Systemdynamik, Universität Stuttgart

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