微生物过程的多目标非线性模型预测控制

N. Sridhar, L. Sridhar
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引用次数: 0

摘要

对考虑竞争、寄生、寄生、中性、共生和合作的微生物群动态模型进行了严格的多目标非线性模型预测控制。优化语言pyomo与最先进的全局优化求解器BARON一起使用。研究表明,当产生所需产物的物种对其他物种有利时,所需产物在增加之前会先减少。
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Multiobjective Nonlinear Model Predictive Control of the Microbial Process
A rigorous multiobjective nonlinear model predictive control is performed on the microbiome dynamic model that takes into account competition, amensalism, parasitism, neutralism, commensalism and cooperation. The optimization language pyomo is used in conjunction with the state of the art global optimization solver BARON. It is demonstrated that when the species that produces the required product is favorable to the other species there is an initial decrease in the required product before an increase happens.
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