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

•Optimizations in winery wastewater and sewage sludge treatment are tackled.•Recent metaheuristics namely CMAES, BSA and DE are found to give competent results.•Improved DE metaheuristic, BSA gives best overall performance for all problems. Fed-batch fermentation has gained attention in recent years...

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Published inExpert systems with applications Vol. 91; pp. 286 - 297
Main Authors Mohd Zain, Mohamad Zihin bin, Kanesan, Jeevan, Kendall, Graham, Chuah, Joon Huang
Format Journal Article
LanguageEnglish
Published New York Elsevier Ltd 01.01.2018
Elsevier BV
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Online AccessGet full text
ISSN0957-4174
1873-6793
1873-6793
DOI10.1016/j.eswa.2017.07.034

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Abstract •Optimizations in winery wastewater and sewage sludge treatment are tackled.•Recent metaheuristics namely CMAES, BSA and DE are found to give competent results.•Improved DE metaheuristic, BSA gives best overall performance for all problems. 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, AAA 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.
AbstractList 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, AAA 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.
•Optimizations in winery wastewater and sewage sludge treatment are tackled.•Recent metaheuristics namely CMAES, BSA and DE are found to give competent results.•Improved DE metaheuristic, BSA gives best overall performance for all problems. 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, AAA 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.
Author Kendall, Graham
Chuah, Joon Huang
Mohd Zain, Mohamad Zihin bin
Kanesan, Jeevan
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Keywords Backtracking Search Algorithm
Evolutionary algorithms
Feeding trajectory optimization
Wastewater treatment
Sewage sludge
Fed-batch fermentation
Language English
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Snippet •Optimizations in winery wastewater and sewage sludge treatment are tackled.•Recent metaheuristics namely CMAES, BSA and DE are found to give competent...
Fed-batch fermentation has gained attention in recent years due to its beneficial impact in the economy and productivity of bioprocesses. However, the...
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StartPage 286
SubjectTerms Artificial intelligence
Backtracking Search Algorithm
Biogas
Computer simulation
Covariance matrix
Evolutionary algorithms
Fed batch
Fed-batch fermentation
Feeding trajectory optimization
Fermentation
Impact analysis
Optimization
Optimization algorithms
Search algorithms
Sewage sludge
Studies
Swarm intelligence
Wastewater treatment
Water treatment plants
Wineries & vineyards
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Title Optimization of fed-batch fermentation processes using the Backtracking Search Algorithm
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