Toward predictive food process models: A protocol for parameter estimation.

Mathematical models, in particular, physics-based models, are essential tools to food product and process design, optimization and control. The success of mathematical models relies on their predictive capabilities. However, describing physical, chemical and biological changes in food processing req...

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Detalles Bibliográficos
Publicado en:Critical Reviews in Food Science & Nutrition Vol. 58; no. 3; pp. 436 - 450
Autores principales: Vilas, Carlos, Arias-Méndez, Ana, García, Míriam R., Alonso, Antonio A., Balsa-Canto, E.
Formato: review Journal Article
Publicado: Taylor & Francis Ltd 2018
Acceso en línea:Ver este registro en EBSCOhost
Descripción
Sumario:Mathematical models, in particular, physics-based models, are essential tools to food product and process design, optimization and control. The success of mathematical models relies on their predictive capabilities. However, describing physical, chemical and biological changes in food processing requires the values of some, typically unknown, parameters. Therefore, parameter estimation from experimental data is critical to achieving desired model predictive properties. This work takes a new look into the parameter estimation (or identification) problem in food process modeling. First, we examine common pitfalls such as lack of identifiability and multimodality. Second, we present the theoretical background of a parameter identification protocol intended to deal with those challenges. And, to finish, we illustrate the performance of the proposed protocol with an example related to the thermal processing of packaged foods.