Juniorprofessur für Optimierung von Energiesystemen

Adresse:
Cauerstraße 11
91058 Erlangen


Forschungsprojekt(e)


(TRR 154: Mathematische Modellierung, Simulation und Optimierung am Beispiel von Gasnetzwerken):
Dekompositionsmethoden für ganzzahlig-kontinuierliche Optimalsteuerung (A05) (2018 - 2022)
Prof. Dr. Günter Leugering; Prof. Dr. Alexander Martin; Prof. Dr. Martin Schmidt
(01.07.2018 - 30.06.2022)


(TRR 154: Mathematische Modellierung, Simulation und Optimierung am Beispiel von Gasnetzwerken):
Mehrstufige gemischt-ganzzahlig nichtlineare Optimierung für Gasmärkte (B08) (2018 - 2022)
Prof. Dr. Veronika Grimm; Prof. Dr. Martin Schmidt
(01.07.2018 - 30.06.2022)


(EiFer: Energieeffizienz durch intelligente Fernwärmenetze):
EiFer: Adaptive Verfahren zur Optimierung gekoppelter pH-Systeme
Prof. Dr. Martin Schmidt
(01.01.2018 - 31.12.2020)


(Energie Campus Nürnberg (EnCN2)):
EMD: Energiemarktdesign
Prof. Dr. Veronika Grimm; Prof. Dr. Roland Ismer; Prof. Dr. Frauke Liers; Prof. Dr. Alexander Martin; PD Dr. Lars Schewe; Prof. Dr. Martin Schmidt; Prof. Dr. Gregor Zöttl
(01.01.2017 - 31.12.2021)


(SFB TRR 154 “Mathematische Modellierung, Simulation und Optimierung am Beispiel von Gasnetzen”):
Wohlfahrtsoptimale Nominierungen in Gasnetzen und zugehörige Gleichgewichte
Prof. Dr. Veronika Grimm; PD Dr. Lars Schewe; Prof. Dr. Martin Schmidt; Prof. Dr. Gregor Zöttl
(01.10.2016 - 30.06.2018)



Publikationen (Download BibTeX)

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Hante, F., & Schmidt, M. (2017). Complementarity-Based Nonlinear Programming Techniques for Optimal Mixing in Gas Networks.
Hübner, J., Schmidt, M., & Steinbach, M.C. (2017). Optimization Techniques for Tree-Structured Nonlinear Problems.
Leugering, G., Martin, A., Schmidt, M., & Sirvent, M. (2017). Nonoverlapping Domain Decomposition for Optimal Control Problems governed by Semilinear Models for Gas Flow in Networks. Control and Cybernetics, 46(3), 191-225.
Hübner, J., Steinbach, M.C., & Schmidt, M. (2017). A Distributed Interior-Point KKT-Solver for Multistage Stochastic Problems. Informs Journal on Computing, 29(4), 612-630. https://dx.doi.org/10.1287/ijoc.2017.0748
Geißler, B., Morsi, A., Schewe, L., & Schmidt, M. (2017). Penalty Alternating Direction Methods for Mixed-Integer Optimization: A New View on Feasibility Pumps. SIAM Journal on Optimization, 27(3), 1611-1636. https://dx.doi.org/10.1137/16M1069687
Schmidt, M., Aßmann, D., Burlacu, R., Humpola, J., Joormann, I., Kanelakis, N.,... Sirvent, M. (2017). GasLib - A Library of Gas Network Instances. Data, 2(4). https://dx.doi.org/10.3390/data2040040
Grimm, V., Schewe, L., Schmidt, M., & Zöttl, G. (2017). Uniqueness of market equilibrium on a network: A peak-load pricing approach. European Journal of Operational Research, 261(3), 971 - 983. https://dx.doi.org/10.1016/j.ejor.2017.03.036
Hiller, B., Koch, T., Pfetsch, M.E., Schmidt, M., Geißler, B., Henrion, R.,... Steinbach, M.C. (2017). Capacity Evaluation for Large-Scale Gas Networks.
Hante, F., Leugering, G., Martin, A., Schewe, L., & Schmidt, M. (2017). Challenges in Optimal Control Problems for Gas and Fluid Flow in Networks of Pipes and Canals: From Modeling to Industrial Applications. In Manchanda, Pammy; Lozi, René; Siddiqi, Abul Hasan (Eds.), Industrial Mathematics and Complex Systems: Emerging Mathematical Models, Methods and Algorithms (pp. 77-122). Singapore: Springer Singapore.
Rose, D., Schmidt, M., Steinbach, M.C., & Willert, B.M. (2016). Computational optimization of gas compressor stations: MINLP models versus continuous reformulations. Mathematical Methods of Operations Research, 83(3), 409--444. https://dx.doi.org/10.1007/s00186-016-0533-5
Schmidt, M., Steinbach, M.C., & Willert, B.M. (2016). High detail stationary optimization models for gas networks: validation and results. Optimization and Engineering, 17(2), 437-472. https://dx.doi.org/10.1007/s11081-015-9300-3
Grimm, V., Martin, A., Schmidt, M., Weibelzahl, M., & Zöttl, G. (2016). Transmission and generation investment in electricity markets: The effect of market splitting and network fee regimes. European Journal of Operational Research, 254(2), 493-509. https://dx.doi.org/10.1016/j.ejor.2016.03.044
Schmidt, M. (2015). An interior-point method for nonlinear optimization problems with locatable and separable nonsmoothness. EURO Journal on Computational Optimization, 3(4), 309-348. https://dx.doi.org/10.1007/s13675-015-0039-6
Domschke, P., Groß, M., Hante, F., Hiller, B., Schewe, L., & Schmidt, M. (2015). Mathematische Modellierung, Simulation und Optimierung von Gastransportnetzwerken. Gas und Wasserfach, Gas, Erdgas, 156(11), 880-885.
Schmidt, M., Steinbach, M.C., & Willert, B.M. (2015). High detail stationary optimization models for gas networks. Optimization and Engineering, 16(1), 131-164. https://dx.doi.org/10.1007/s11081-014-9246-x
Schmidt, M., Steinbach, M.C., & Willert, B.M. (2015). The precise NLP model. In Koch T, Hiller B, Pfetsch ME, Schewe L (Eds.), Evaluating Gas Network Capacities (pp. 181-210). SIAM.
Hiller, B., Humpola, J., Lehmann, T., Lenz, R., Morsi, A., Pfetsch, M.E.,... Willert, B.M. (2015). Computational results for validation of nominations. In Koch T, Hiller B, Pfetsch ME, Schewe L (Eds.), Evaluating Gas Network Capacities (pp. 233-270). SIAM.
Fügenschuh, A., Geißler, B., Gollmer, R., Morsi, A., Pfetsch, M.E., Rövekamp, J.,... Steinbach, M.C. (2015). Physical and technical fundamentals of gas networks. In Koch T, Hiller B, Pfetsch ME, Schewe L (Eds.), Evaluating Gas Network Capacities (pp. 17-44). SIAM.
Joormann, I., Schmidt, M., Steinbach, M.C., & Willert, B.M. (2015). What does “feasible” mean? In Koch T, Hiller B, Pfetsch ME, Schewe L (Eds.), Evaluating Gas Network Capacities (pp. 211-232). SIAM.
Geißler, B., Morsi, A., Schewe, L., & Schmidt, M. (2015). Solving power-constrained gas transportation problems using an MIP-based alternating direction method. Computers & Chemical Engineering, 82, 303-317. https://dx.doi.org/10.1016/j.compchemeng.2015.07.005

Zuletzt aktualisiert 2019-08-02 um 22:50