# Christopher L. E. Swartz

According to our database

Collaborative distances:

^{1}, Christopher L. E. Swartz authored at least 14 papers between 2004 and 2019.Collaborative distances:

## Timeline

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#### On csauthors.net:

## Bibliography

2019

Dynamic real-time optimization of distributed MPC systems using rigorous closed-loop prediction.

Computers & Chemical Engineering, 2019

2018

Approximation techniques for dynamic real-time optimization (DRTO) of distributed MPC systems.

Computers & Chemical Engineering, 2018

An optimization framework for scheduling of converter aisle operation in a nickel smelting plant.

Computers & Chemical Engineering, 2018

2017

A parallel structure exploiting nonlinear programming algorithm for multiperiod dynamic optimization.

Computers & Chemical Engineering, 2017

Approximation of closed-loop prediction for dynamic real-time optimization calculations.

Computers & Chemical Engineering, 2017

Practical optimization for cost reduction of a liquefier in an industrial air separation plant.

Computers & Chemical Engineering, 2017

Handling multi-rate and missing data in system identification.

Proceedings of the 2017 American Control Conference, 2017

2016

Flexibility analysis of process supply chain networks.

Computers & Chemical Engineering, 2016

Optimal response under partial plant shutdown with discontinuous dynamic models.

Computers & Chemical Engineering, 2016

Economic model predictive control of the electric arc furnace using data-driven multi-rate models.

Proceedings of the 2016 American Control Conference, 2016

2014

Robust decision making for hybrid process supply chain systems via model predictive control.

Computers & Chemical Engineering, 2014

2012

Flexible maintenance within a continuous-time state-task network framework.

Computers & Chemical Engineering, 2012

2008

A mixed-integer formulation for back-off under constrained predictive control.

Computers & Chemical Engineering, 2008

2004

Input saturation effects in optimizing control - inclusion within a simultaneous optimization framework.

Computers & Chemical Engineering, 2004