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Estimation of Sporulated Cell Concentration of Bacillus thuringiensis in a Batch Biochemical Reactor via Simple State Observers

Author

Listed:
  • José Luis Zárate-Castrejón

    (Programa de Biotecnología, División de Ciencias de la Salud e Ingenierías, Campus Celaya-Salvatierra, Universidad de Guanajuato, Mutualismo #303, Col. La Suiza, Celaya 38060, Guanajuato, Mexico)

  • Pablo A. López-Pérez

    (Escuela Superior de Apan, Universidad Autónoma del Estado de Hidalgo, Carretera Apan-Calpulalpan, Km.8., Chimalpa Tlalayote s/n, Apan 43900, Hidalgo, Mexico)

  • Milagros López-López

    (Institute of Industrial Biotechnology, Government College University, Lahore 54000, Pakistan)

  • Carlos A. Núñez-Colín

    (Programa de Biotecnología, División de Ciencias de la Salud e Ingenierías, Campus Celaya-Salvatierra, Universidad de Guanajuato, Mutualismo #303, Col. La Suiza, Celaya 38060, Guanajuato, Mexico)

  • Rafael A. Veloz-García

    (Programa de Biotecnología, División de Ciencias de la Salud e Ingenierías, Campus Celaya-Salvatierra, Universidad de Guanajuato, Mutualismo #303, Col. La Suiza, Celaya 38060, Guanajuato, Mexico)

  • Hamid Mukhtar

    (Institute of Industrial Biotechnology, Government College University, Lahore 54000, Pakistan)

  • Vicente Peña-Caballero

    (Programa de Biotecnología, División de Ciencias de la Salud e Ingenierías, Campus Celaya-Salvatierra, Universidad de Guanajuato, Mutualismo #303, Col. La Suiza, Celaya 38060, Guanajuato, Mexico)

Abstract

This paper presents a contrast of two different observation strategies viz a nonlinear observer and a classical extended Luenberger observer applied to a bioreactor system for Bacillus thuringiensis production. The performance of the two observers was evaluated under different conditions, both with and without state perturbations. Firstly, equal initial conditions were considered without the presence of white noise in the measurement of dissolved oxygen concentration in the culture medium. The performance was then analyzed by perturbing the maximum cell growth rate with equal and different initial conditions, and, finally, the performance of the observer with the presence of white noise was evaluated. The proposed observer performed better than the extended Luenberger observer against initial conditions different from the model. The results of this study are of great interest, as they provide insight into the estimation of the state of the dynamics for the B. thuringiensis bioreactor in a batch mode. In addition, these results provide valuable information for future research in the design of observers for B. thuringiensis bioprocessing.

Suggested Citation

  • José Luis Zárate-Castrejón & Pablo A. López-Pérez & Milagros López-López & Carlos A. Núñez-Colín & Rafael A. Veloz-García & Hamid Mukhtar & Vicente Peña-Caballero, 2024. "Estimation of Sporulated Cell Concentration of Bacillus thuringiensis in a Batch Biochemical Reactor via Simple State Observers," Mathematics, MDPI, vol. 12(24), pages 1-26, December.
  • Handle: RePEc:gam:jmathe:v:12:y:2024:i:24:p:3996-:d:1547788
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    References listed on IDEAS

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    1. Caraballo, Tomás & López-de-la-Cruz, Javier & Caraballo-Romero, Verónica, 2024. "Effects of real random perturbations on Monod and Haldane consumption functions in the chemostat model," Mathematics and Computers in Simulation (MATCOM), Elsevier, vol. 218(C), pages 482-497.
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