4.7 Article

Accuracy of Semi-Analytical and Numerical Approaches in the Evaluation of Serial Bernoulli Production Lines

Journal

MATHEMATICS
Volume 9, Issue 13, Pages -

Publisher

MDPI
DOI: 10.3390/math9131461

Keywords

production system engineering; serial Bernoulli production line; finite state method; aggregation procedure; analytical solution; performance measures

Categories

Funding

  1. Croatian Science Foundation [UIP-2019-04-6573]
  2. University of Zagreb

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The study examined four mathematical approaches for modeling the steady-state behavior of production lines and confirmed the accuracy and reliability of performance measures obtained using these methods. Regardless of theoretical backgrounds, all methods demonstrated relevant reliability.
The manufacturing industry has a great impact on the economic growth of countries. It is, therefore, crucial to master the skills of the production system by mathematical tools that enable the evaluation of the production systems' performance measures. Four mathematical approaches toward the modeling of steady-state behavior of serial Bernoulli production lines were considered in this study, namely, the analytical approach, the finite state method, the aggregation procedure, and numerical modeling. The accuracy of the performance measures determined using the semi-analytical methods and the numerical approach was validated using numerous theoretical examples and the results obtained using the analytical model. All of the considered methods demonstrated relevant reliability, regardless of the different theoretical backgrounds.

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