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SUPERVISORY EXPERT SYSTEM-BASED INTELLIGENT OPTIMIZATION OF A MICROBIOREACTOR

机译:基于监督专家系统的微生物反应器智能优化

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摘要

Microbioreactors with immobilized yeast cells are conventionally packed uniformly. A recent study has shown, however, that a topologically optimized distribution of cells yields much greater outputs of the desired product. Because topology optimization is a complex method requiring a good mathematical model, artificial intelligence (AI) has been employed here as an alternative method. For the same system-in other words, immobilized genetically modified yeast cells-an expert system selected online the better of two AI methods-a fuzzy neural network (FNN) and a genetic algorithm (GA)-according to the output of the product recombinant glucoamylase. Progressing in short time intervals enables the expert system to shift continually between the FNN and the GA, thereby maintaining optimal performance at all times. This method is more robust than topology optimization, easier to implement, does not require a mathematical model, and improves glucoamylase output even further.
机译:通常将具有固定化酵母细胞的微生物反应器均匀包装。然而,最近的研究表明,细胞的拓扑优化分布可产生所需产物的更大产量。由于拓扑优化是需要良好数学模型的复杂方法,因此此处采用了人工智能(AI)作为替代方法。对于相同的系统,换句话说,固定化的转基因酵母细胞-根据产品重组体的输出,在专家系统中在线选择两种AI方法(模糊神经网络(FNN)和遗传算法(GA))中较好的一种葡糖淀粉酶。以较短的时间间隔进行的处理可使专家系统在FNN和GA之间连续转换,从而始终保持最佳性能。该方法比拓扑优化更健壮,更易于实现,不需要数学模型,甚至可以进一步提高葡糖淀粉酶的产量。

著录项

  • 来源
    《Applied Artificial Intelligence》 |2014年第3期|91-110|共20页
  • 作者

    Pratap R. Patnaik;

  • 作者单位

    Department of Chemical Engineering, C. V.Raman College of Engineering, Bidyanagar, Mahura, Janla, Bhubaneswar-752 054, India;

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  • 正文语种 eng
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