Multivariable Controller Design for the Cooling System of a PEM Fuel Cell by considering Nearly Optimal Solutions in a Multiobjective Optimization Approach

Joint Authors

Herrero, J. M.
Pajares, Alberto
Blasco, Xavier
Simarro, Raúl

Source

Complexity

Issue

Vol. 2020, Issue 2020 (31 Dec. 2020), pp.1-17, 17 p.

Publisher

Hindawi Publishing Corporation

Publication Date

2020-08-06

Country of Publication

Egypt

No. of Pages

17

Main Subjects

Philosophy

Abstract EN

This paper presents a design for the multivariable control of a cooling system in a PEM (proton exchange membrane) fuel cell stack.

This system is complex and challenging enough: interactions between variables, highly nonlinear dynamic behavior, etc.

This design is carried out using a multiobjective optimization methodology.

There are few previous works that address this problem using multiobjective techniques.

Also, this work has, as a novelty, the consideration of, in addition to the optimal controllers, the nearly optimal controllers nondominated in their neighborhood (potentially useful alternatives).

In the multiobjective optimization problem approach, the designer must make decisions that include design objectives; parameters of the controllers to be estimated; and the conditions and characteristics of the simulation of the system.

However, to simplify the optimization and decision stages, the designer does not include all the desired scenarios in the multiobjective problem definition.

Nevertheless, these aspects can be analyzed in the decision stage only for the controllers obtained with a much less computational cost.

At this stage, the potentially useful alternatives can play an important role.

These controllers have significantly different parameters and therefore allow the designer to make a final decision with additional valuable information.

Nearly optimal controllers can obtain an improvement in some aspects not included in the multiobjective optimization problem.

For example, in this paper, various aspects are analyzed regarding potentially useful solutions, such as (1) the influence of certain parameters of the simulator; (2) the sample time of the controller; (3) the effect of stack degradation; and (4) the robustness.

Therefore, this paper highlights the relevance of this in-depth analysis using the methodology proposed in the design of the multivariable control of the cooling system of a PEM fuel cell.

This analysis can modify the final choice of the designer.

American Psychological Association (APA)

Pajares, Alberto& Blasco, Xavier& Herrero, J. M.& Simarro, Raúl. 2020. Multivariable Controller Design for the Cooling System of a PEM Fuel Cell by considering Nearly Optimal Solutions in a Multiobjective Optimization Approach. Complexity،Vol. 2020, no. 2020, pp.1-17.
https://search.emarefa.net/detail/BIM-1144474

Modern Language Association (MLA)

Pajares, Alberto…[et al.]. Multivariable Controller Design for the Cooling System of a PEM Fuel Cell by considering Nearly Optimal Solutions in a Multiobjective Optimization Approach. Complexity No. 2020 (2020), pp.1-17.
https://search.emarefa.net/detail/BIM-1144474

American Medical Association (AMA)

Pajares, Alberto& Blasco, Xavier& Herrero, J. M.& Simarro, Raúl. Multivariable Controller Design for the Cooling System of a PEM Fuel Cell by considering Nearly Optimal Solutions in a Multiobjective Optimization Approach. Complexity. 2020. Vol. 2020, no. 2020, pp.1-17.
https://search.emarefa.net/detail/BIM-1144474

Data Type

Journal Articles

Language

English

Notes

Includes bibliographical references

Record ID

BIM-1144474