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Optimization of fed-batch fermentation processes using the Backtracking Search Algorithm

机译:使用回溯搜索算法优化分批补料发酵工艺

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Fed-batch fermentation has gained attention in recent years due to its beneficial impact in the economy and productivity of bioprocesses. However, the complexity of these processes requires an expert system that involves swarm intelligence-based metaheuristics such as Artificial Algae Algorithm (AAA), Artificial Bee Colony (ABC), Covariance Matrix Adaptation Evolution Strategy (CMAES) and Differential Evolution (DE) for simulation and optimization of the feeding trajectories. DE traditionally performs better than other evolutionary algorithms and swarm intelligence techniques in optimization of fed-batch fermentation. In this work, an improved version of DE namely Backtracking Search Algorithm (BSA) has edged DE and other recent metaheuristics to emerge as superior optimization method. This is shown by the results obtained by comparing the performance of BSA, DE, CMAES, MA and ABC in solving six fed batch fermentation case studies. BSA gave the best overall performance by showing improved solutions and more robust convergence in comparison with various metaheuristics used in this work. Also, there is a gap in the study of fed-batch application of wastewater and sewage sludge treatment. Thus, the fed batch fermentation problems in winery wastewater treatment and biogas generation from sewage sludge are investigated and reformulated for optimization. (C) 2017 Elsevier Ltd. All rights reserved.
机译:近年来,分批补料发酵由于对生物工艺的经济性和生产率的有益影响而受到关注。但是,这些过程的复杂性需要一个专家系统,该系统涉及基于群体智能的元启发式算法,例如人工藻类算法(AAA),人工蜂群(ABC),协方差矩阵适应进化策略(CMAES)和差分进化(DE)进行仿真和优化进给轨迹。传统上,在分批补料发酵的优化中,DE的性能优于其他进化算法和群体智能技术。在这项工作中,DE的改进版本(即回溯搜索算法(BSA))使DE和其他最近的元启发式方法脱颖而出,成为了一种出色的优化方法。通过比较BSA,DE,CMAES,MA和ABC在解决六个补料分批发酵案例研究中的性能获得的结果表明了这一点。与本工作中使用的各种元启发式方法相比,BSA通过显示改进的解决方案和更强大的收敛性来提供最佳的总体性能。此外,在废水的进料分批应用和污水污泥处理的研究中也存在差距。因此,对酿酒厂废水处理和污水污泥产生沼气中的补料分批发酵问题进行了研究,并对其进行了优化。 (C)2017 Elsevier Ltd.保留所有权利。

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