Applied Mathematics and Numerical Analysis

Session 652 - Modeling, Reduction and Control of Distributed Parameter Systems
The session encompasses novel theoretical results as well as applications in the areas of model reduction, simulation and control of distributed parameter systems. Specific theoretical topics of interest include, but are not limited to, predictive and fault-tolerant control of linear/nonlinear PDEs, model reduction and control of stochastic PDEs, control of particulate processes based on population balance models, and networked control and monitoring of distributed processes. Applications to advanced materials processing, particulate processes and biological systems are also of interest.
Chair: Raymond A. Adomaitis
CoChair: Antonios Armaou
CoSponsor(s): Systems and Process Control
  A Dynamic Model for a Cupola Furnace
Sten Bay Jorgensen, John Bagterp Jorgensen
  Approximation of Actual Number Densities of Age-Structured Cell Division Models Using Stochastic Equations of Population Balances
Eric Sherer, Robert E. Hannemann, Ann E. Rundell, Doraiswami Ramkrishna
  Model Predictive Control of Thin Film Porosity Using Stochastic Differential Equations
Gangshi Hu, Yiming Lou, Gerassimos Orkoulas, Panagiotis D. Christofides
  Output Feedback Control of Transport-Reaction Processes Using Adaptive Model Reduction
Sivakumar Pitchaiah, Antonios Armaou
  Actuator Fault Detection and Reconfiguration In Distributed Processes with Measurement Sampling Constraints
Sathyendra Ghantasala, Nael H. El-Farra
  Boundary Predictive Control of Kuramoto-Sivashinsky Equation
Stevan Dubljevic
  Model Predictive Control of Granule Microstructure
Frantisek Stepanek, Vladislav Nevoral, Mansoor A. Ansari
  Concluding Remarks

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