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Comparison of real-time methods for maximizing power output in microbial fuel cells

机译:实时最大化微生物燃料电池功率输出方法的比较

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摘要

Microbial fuel cells (MFCs) constitute a novel power generation technology that converts organic waste to electrical energy using microbially catalyzed electrochemical reactions. Since the power output of MFCs changes considerably with varying operating conditions, the online optimization of electrical load (i.e., external resistance) is extremely important for maintaining a stable MFC performance. The application of several real-time optimization methods is presented, such as the perturbation and observation method, the gradient method, and the recently proposed multiunit method, for maximizing power output of MFCs by varying the external resistance. Experiments were carried out in two similar MFCs fed with acetate. Variations in substrate concentration and temperature were introduced to study the performance of each optimization method in the face of disturbances unknown to the algorithms. Experimental results were used to discuss advantages and limitations of each optimization method. © 2010 American Institute of Chemical Engineers AIChE J, 2010
机译:微生物燃料电池(MFCs)构成了一种新颖的发电技术,该技术利用微生物催化的电化学反应将有机废物转化为电能。由于MFC的功率输出随操作条件的变化而发生很大变化,因此在线优化电气负载(即外部电阻)对于保持MFC的稳定性能极为重要。提出了几种实时优化方法的应用,例如微扰和观测方法,梯度方法以及最近提出的多单元方法,这些方法通过改变外部电阻来最大化MFC的功率输出。实验是在两种类似的装有乙酸酯的MFC中进行的。引入了底物浓度和温度的变化,以研究每种优化方法在算法未知的情况下的性能。实验结果被用来讨论每种优化方法的优点和局限性。 ©2010美国化学工程师学会AIChE J,2010

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  • 来源
    《AIChE Journal》 |2010年第10期|p.2742-2750|共9页
  • 作者单位

    École Polytechnique de Montréal, Dept. of Chemical Engineering, Montreal, Canada, H3C 3A7;

    École Polytechnique de Montréal, Dept. of Chemical Engineering, Montreal, Canada, H3C 3A7;

    École Polytechnique de Montréal, Dept. of Chemical Engineering, Montreal, Canada, H3C 3A7;

    École Polytechnique de Montréal, Dept. of Chemical Engineering, Canada, H3C 3A7, and Biotechnology Research Institute, National Research Council, Montreal, Canada, H4P 2R2;

    École Polytechnique de Montréal, Dept. of Chemical Engineering, Canada, H3C 3A7, and Biotechnology Research Institute, National Research Council, Montreal, Canada, H4P 2R2;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    maximum power point tracking; real-time optimization; perturbation and observation method; microbial fuel cell; multiunit optimization;

    机译:最大功率点跟踪实时优化扰动观察法微生物燃料电池多单元优化;

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