Dr.-Ing.

Martin Mönnigmann

Oberingenieur

 
Lehrstuhl: Prozesstechnik


Thema: Constructive Nonlinear Dynamics for the Design and Control of Chemical Engineering Processes
Zeit am LPT: 1998-2007

Dissertation


[LPT-diss-2004-04]
Martin Mönnigmann: Analysis and Synthesis of Multi-phase Systems using Nonlinear Dynamics. Fortschritt-Berichte VDI, Nr. 801, VDI-Verlag, Düsseldorf, 2004




Publikationen von Martin Mönnigmann


Publikationen in Zeitschriften


[LPT-2011-05]
Tom Quaiser, Anna Dittrich, Fred Schaper, Martin Mönnigmann: A simple work flow for biologically inspired model reduction - application to early JAK-STAT signaling. BMC Systems Biology, 2011, 5:30


[LPT-2009-12]
Tom Quaiser, Martin Mönnigmann: Systematic identifiability testing for unambiguous mechanistic modeling - application to JAK-STAT, MAP kinase, and NF-kappaB signaling pathway models. BMC Systems Biology, 2009, 3(50)


[LPT-2008-19]
Johannes Gerhard, Wolfgang Marquardt, Martin Mönnigmann: Normal vectors on critical manifolds for robust design of transient processes in the presence of fast disturbances. SIAM Journal on Applied Dynamical Systems, 2008, 7(2), 461-490


[LPT-2008-13]
Johannes Gerhard, Martin Mönnigmann, Wolfgang Marquardt: Steady state optimization with guaranteed stability of a tryptophan biosynthesis model. Computers & Chemical Engineering, 2008, 32(12), 2914-2919


[LPT-2008-10]
Moritz Diehl, Johannes Gerhard, Wolfgang Marquardt, Martin Mönnigmann: Numerical solution approaches for robust nonlinear optimal control problems. Computers & Chemical Engineering, 2008, 32(6), 1287-1300


[LPT-2008-06]
Jürgen Hahn, Martin Mönnigmann, Wolfgang Marquardt: On the use of bifurcation analysis for robust controller tuning for nonlinear systems. Journal of Process Control, 2008, 18(3-4), 408-420


[LPT-2008-04]
Robert Grosch, Martin Mönnigmann, Wolfgang Marquardt: Integrated design and control for robust performance: Application to an MSMPR crystallizer. Journal of Process Control, 2008, 18(2), 173-188


[LPT-2007-13]
Martin Mönnigmann, Wolfgang Marquardt, C. H. Bischof, T. Beelitz, B. Lang, P. Willems: A hybrid approach for efficient robust design of dynamic systems. SIAM Review, 2007, 49(2), 236-254


[LPT-2005-35]
C. A. Floudas, H. K. Fung, S. R. McAllister, Martin Mönnigmann, R. Rajgaria: Advances in protein structure prediction and De Novo protein design: A review. Chemical Engineering Science, 2005, 61, 966-988


[LPT-2005-34]
Martin Mönnigmann, C. A. Floudas: Loop structure prediction with fexible stem geometries. Proteins: Structure, Function, and Bioinformatics, 2005, 2005, 61(4), 748-762


[LPT-2005-08]
Wolfgang Marquardt, Martin Mönnigmann: Constructive nonlinear dynamics in process systems engineering. Computers & Chemical Engineering, 2005, 29, 1265-1275


[LPT-2005-05]
Martin Mönnigmann, Wolfgang Marquardt: Steady state process optimization with guaranteed robust stability and flexibility: Application to HDA reaction section. Industrial & Engineering Chemistry Research, 2005, 44, 2737-2753


[LPT-2004-33]
Jürgen Hahn, Martin Mönnigmann, Wolfgang Marquardt: A method for robustness analysis of controlled nonlinear systems. Chemical Engineering Science, 2004, 59(20), 4325-4338


[LPT-2002-01]
Martin Mönnigmann, Wolfgang Marquardt: Steady-state process optimization with guaranteed robust stability and feasibility. AIChE Journal, 2003, 49(12), 3110-3126


[LPT-2000-42]
M. Strösser, Martin Mönnigmann, V. Dohm: Universal amplitude ratios for the superfluid transition of He-4. Physica B: Condensed Matter, 2000, 284, 41-42


[LPT-2000-32]
Martin Mönnigmann, Wolfgang Marquardt: Normal vectors on manifolds of critical points for parametric robustness of equilibrium solutions of ODE systems. Journal of Nonlinear Science, 2002, 12, 85-112


[LPT-1998-30]
S. A. Larin, Martin Mönnigmann, M. Strösser, V. Dohm: Five-loop additive renormalization in the phi^4 theory and amplitude functions of the minimally renormalized specific heat in three dimensions. Physical Review B 58, 1998, 3394-3408



Publikationen in Büchern


[LPT-2008-58]
Wolfgang Marquardt, Martin Mönnigmann: Robust design of dynamic systems by constructive nonlinear dynamics. In: P.M. Paradalos, C.A. Floudas (Eds.): Encyclopedia of optimization, 2nd ed., Springer US, 2008, 3307-3314


[LPT-2005-13]
Johannes Gerhard, Martin Mönnigmann, Wolfgang Marquardt: Constructive nonlinear dynamics –foundations and application to robust nonlinear control. In: T. Meurer, K. Graichen, E. Gilles (Eds.): Control and observer design for nonlinear finite- and infinite-dimensional systems, Springer Verlag, 2005, 165-182


[LPT-2004-27]
Martin Mönnigmann, Jürgen Hahn, Wolfgang Marquardt: Towards constructive nonlinear dynamics - case studies in chemical process design. In: G. Radons, A. Reimund (Eds.): Nonlinear dynamics of production systems, Wiley-VCH, Berlin, 2004, 503-526



Konferenzbeiträge


[LPT-2007-14]
Tom Quaiser, Wolfgang Marquardt, Martin Mönnigmann: Local identifiability analysis of large signaling pathways models. In: Foundations of Systems Biology in Engineering, Stuttgart, Germany, 9.-12.9.2007


[LPT-2006-30]
Johannes Gerhard, Wolfgang Marquardt, Martin Mönnigmann: Towards robust design of closed-loop nonlinear systems with input and state constraints. ADCHEM 2006 (International symposium on advanced control of chemical processes), Gramado, Brazil, 329-334


[LPT-2005-14]
Johannes Gerhard, Maria-Christina Laiou, Martin Mönnigmann, Wolfgang Marquardt, M. Lakehal-Ayat, E. Aneke, R. Busch: Robust yaw control design with active differential and active roll control systems. 16th IFAC World Congress, Prague, Czech Republic


[LPT-2004-31]
Maria-Christina Laiou, Martin Mönnigmann, Wolfgang Marquardt: Stabilization of nonlinear systems by bifurcation placement. NOLCOS 2004 - 6th IFAC Symposium on Nonlinear Control Systems, Stuttgart, Germany


[LPT-2004-28]
Johannes Gerhard, Martin Mönnigmann, Wolfgang Marquardt: Robust stable nonlinear control and design of a CSTR in a large operating range. DYCOPS 7, Cambridge, USA


[LPT-2004-19]
Jürgen Hahn, Martin Mönnigmann, Wolfgang Marquardt: Robust tuning of feedback linearizing controllers via bifurcation analysis. ADCHEM 2003, Hong Kong, China, 525-530


[LPT-2004-15]
Wolfgang Marquardt, Martin Mönnigmann: Constructive nonlinear dynamics in process systems engineering. ESCAPE-14 (European Symposium on Computer Aided Process Engineering), Lisbon, Portugal, 99-116


[LPT-2003-28]
Robert Grosch, Martin Mönnigmann, Wolfgang Marquardt: Integrated robust optimal design and control of an MSMPR crystallization process. AIChE Annual Meeting 2003, San Francisco, USA


[LPT-2002-19]
Robert Grosch, Martin Mönnigmann, Heiko Briesen, Wolfgang Marquardt: Optimal design of a continuous crystallizer with guaranteed parametric robust stability. In: J. Grievink, J. v. Schijndel (Eds.): ESCAPE-12 (European Symposium on Computer Aided Process Engineering),The Hague, The Netherlands, 205-210


[LPT-2002-09]
Martin Mönnigmann, Wolfgang Marquardt: Bifurcation placement of hopf points for stabilization of equilibria. 15th IFAC World Congress on Automatic Control, Barcelona, Spain


[LPT-2002-03]
Martin Mönnigmann, Wolfgang Marquardt: Parametrically robust control-integrated design of nonlinear systems. American Control Conference, 4321-4326


[LPT-2000-40]
Ch.H. Bischof, B. Lang, Wolfgang Marquardt, Martin Mönnigmann: Verified determination of singularities in chemical processes. In: W. Krämer, J.W. v. Gudenberg (Eds.): SCAN 2000, 9th GAMM-IMACS International Symposium on Scientific Computing, Computer Arithmetic and Validated Numerics, 305-317


[LPT-2000-33]
Martin Mönnigmann, Wolfgang Marquardt: Chemical process optimization with guaranteed robustness of nonlinear dynamics characteristics. AIChE Annual Meeting 2000, Los Angeles, 12-17.11.2000



Publikationen in Zeitschriften (nicht referiert)


[LPT-2006-24]
Martin Mönnigmann, Johannes Gerhard, Wolfgang Marquardt: Anlagen- und Prozessoptimierung - auch mit unsicheren Modellen. CITPlus, 2006, 10, 25-27



Konferenzbeiträge (nicht referiert)


[LPT-2000-20]
Martin Mönnigmann, Volker Gehrke, Wolfgang Marquardt: Nonlinear dynamics in process design. CHISA 2000, 14th International Congress on Chemical and Process Engineering, Praha, Czech Republic



Präsentationen


[LPT-pre-2010-22]
Tom Quaiser, Anna Dittrich, Fred Schaper, Martin Mönnigmann: Model simplification work flow applied to a model of JAK-STAT signaling . The 11th International Conference on Systems Biology October 2010, Edinburgh, Scotland, 10-15.10.2010


[LPT-pre-2009-10]
Anna Dittrich, Tom Quaiser, Dieter Schwache, Martin Mönnigmann, Fred Schaper: A systems biology view of IL-6-induced signal transduction. GBM, Signal Transduction and Disease, Aachen, 27-30.09.2009


[LPT-pre-2003-32]
Robert Grosch, Martin Mönnigmann, Wolfgang Marquardt: Integrated robust optimal design and control of an MSMPR crystallization process. AIChE Annual Meeting, San Francisco, November 16-21, 2003


[LPT-pre-2003-30]
Robert Grosch, Martin Mönnigmann, Viatcheslav Kulikov, Heiko Briesen, Wolfgang Marquardt: Nonlinear Analysis and Design of Continuously Operated Industrial Crystallizers with Guaranteed Stability. Coupled Simulation of Crystallization Processes.. VerMos Abschlussbegutachtung


[LPT-pre-2002-23]
Robert Grosch, Viatcheslav Kulikov, Martin Mönnigmann, Heiko Briesen, Wolfgang Marquardt: Nonlinear Analysis and Design of Continuously Operated Industrial Crystallizers with Guaranted Stability. Project workshop "Modelling and simulation of the production line of chemical products", Vaalsbroek, The Netherlands, 2-3.7.2002


[LPT-pre-2002-22]
Robert Grosch, Martin Mönnigmann, Heiko Briesen, Wolfgang Marquardt: Optimal Design of a Continuous Crystallizer with Guaranteed Parametric Robust Stability. ESCAPE-12, The Hague, The Netherlands, 26-29.5.2002


[LPT-pre-2001-23]
Robert Grosch, Heiko Briesen, Martin Mönnigmann, Wolfgang Marquardt: Nonlinear Analysis and Design of Continuously Operated Industrial Crystallizers with Guaranteed Stability. Project workshop "Modelling and Simulation of the Production Line of Chemical Products", Vaals, 17-18.9.2001


[LPT-pre-2000-05]
Martin Mönnigmann, Wolfgang Marquardt: Bifurcation Theory Based Design of Chemical Engineering Processes. Workshop on Bifurcations: Numerical Methods, Software, Applications, University of Ghent, Belgium, 29-30.6.2000