This contribution concerns the development of generic methods and tools for robust optimal control of high-pressure liquid chromatographic separation processes. The proposed methodology exploits a deterministic robust formulation, that employs a linearization of the uncertainty set, based on Lyapunov differential equations to generate optimal elution trajectories in the presence of uncertainty. Computational tractability is obtained by casting the robust counterpart problem in the framework of bilevel optimal control where the upper level concerns forward simulation of the Lyapunov differential equation, and the nominal open-loop optimal control problem augmented with the robustified target component purity inequality constraint margin is c...
Dynamic optimization or optimal control problems are omnipresent in the (bio)chemical industry. In a...
The Simulated Moving Bed (SMB) is a continuous multi-column chromatographic process that has-become ...
The statistical technique of optimizing mobile phases for liquid column chromatography using overlap...
This contribution presents a novel model-based methodology for open-loop optimal control of batch hi...
This contribution presents a novel offline dynamic multi-objective optimization framework for high-p...
Chromatography is an important separation process for several industries due to its ability to separ...
Chromatography is an important separation process for several industries due to its ability to separ...
Gradient elution chromatography is an industrial process used to separate and purify multi-component...
: This contribution presents an integrated approach to the optimal operation and automatic control o...
In this paper, we consider a class of non-standard optimal control problems in which the objective f...
Abstract. In the present paper a chromatographic separation problem is modeled and solved using Mixe...
Process development, optimisation and robustness analysis for chromatography separations are often e...
In this paper, an efficient way for robustness testing of gradient elution liquid chromatographic me...
A novel algorithm for robust multi‐objective process optimization under stochastic variability of en...
The Simulated Moving Bed (SMB) is a continuous multi-column chromatographic process that has-become ...
Dynamic optimization or optimal control problems are omnipresent in the (bio)chemical industry. In a...
The Simulated Moving Bed (SMB) is a continuous multi-column chromatographic process that has-become ...
The statistical technique of optimizing mobile phases for liquid column chromatography using overlap...
This contribution presents a novel model-based methodology for open-loop optimal control of batch hi...
This contribution presents a novel offline dynamic multi-objective optimization framework for high-p...
Chromatography is an important separation process for several industries due to its ability to separ...
Chromatography is an important separation process for several industries due to its ability to separ...
Gradient elution chromatography is an industrial process used to separate and purify multi-component...
: This contribution presents an integrated approach to the optimal operation and automatic control o...
In this paper, we consider a class of non-standard optimal control problems in which the objective f...
Abstract. In the present paper a chromatographic separation problem is modeled and solved using Mixe...
Process development, optimisation and robustness analysis for chromatography separations are often e...
In this paper, an efficient way for robustness testing of gradient elution liquid chromatographic me...
A novel algorithm for robust multi‐objective process optimization under stochastic variability of en...
The Simulated Moving Bed (SMB) is a continuous multi-column chromatographic process that has-become ...
Dynamic optimization or optimal control problems are omnipresent in the (bio)chemical industry. In a...
The Simulated Moving Bed (SMB) is a continuous multi-column chromatographic process that has-become ...
The statistical technique of optimizing mobile phases for liquid column chromatography using overlap...