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Electrochemical Modeling and Equivalent Circuit Representation of a Microphotosynthetic Power Cell

机译:微光合成动力电池的电化学建模和等效电路表示

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摘要

This paper discusses the electrochemical modeling of a microphotosynthetic power cell (μ-PSC) in a similar way as the conventional fuel cell model while taking into consideration the electrochemical dynamics of the chemical contents of the cell. It also presents the development of an electrical equivalent circuit that represents the operation of the fabricated cell. The developed equivalent circuit is different from previous works in which they used the equivalent circuit of an ordinary solar cell. The proposed model predicts the performance of this type of power harvesting cell. The study includes the steady-state and transient responses when the cell is connected to an external load. In particular, the focus of this paper is related to the development of an electrical representation with a computationally efficient parameter model for real-time simulation and control. The performance of this model is simulated and results are evaluated and compared with experimental data.
机译:本文以与常规燃料电池模型相似的方式,讨论了微光合成动力电池(μ-PSC)的电化学建模,同时考虑了电池化学成分的电化学动力学。它还提出了等效电路的发展,该等效电路代表了所制造电池的工作情况。开发的等效电路与以前的工作不同,在以前的工作中,他们使用了普通太阳能电池的等效电路。所提出的模型预测了这种类型的能量收集单元的性能。该研究包括当电池连接到外部负载时的稳态和瞬态响应。特别是,本文的重点与电气表示的开发有关,该电气表示具有用于实时仿真和控制的具有计算效率的参数模型。仿真该模型的性能,评估结果并将其与实验数据进行比较。

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