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Modelling of the PEM Fuel Cell and Design of a Closed Loop Control Based DC-DC Boost Converter For Locomotive Application

机译:基于闭环控制的PEM燃料电池建模与机车应用的闭环控制DC-DC升压转换器

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The paper presents an approach for modelling of proton exchange membrane fuel cell (PEMFC) and the design of a closed loop control based DC-DC boost converter for supplying dynamically varying power demand similar to a locomotive. The PEMFC modelling is carried out as an optimization problem to determine its equivalent circuit parameters with the error minimization between the experimental and simulated PEMFC output voltage. The DC-DC boost converter is designed to maintain a desired DC-link voltage, irrespective of the changes in the PEMFC output voltage with varying operating and loading conditions. The MATLAB/SIMULINK model of the proposed PEMFC-based energy system is developed to examine the performance of the PEMFC and the designed controller under the dynamically varying load of a practical drive cycle scenario. For the controller design of the DC-DC boost converter, the mathematical concept of venable K-factor is used.
机译:本文介绍了质子交换膜燃料电池(PEMFC)的建模方法,以及基于闭环控制的DC-DC升压转换器的设计,用于提供与机车类似的动态变化的功率需求。 PEMFC建模作为优化问题,以确定其等效电路参数,以实验和模拟PEMFC输出电压之间的误差最小化。 DC-DC升压转换器设计成维持所需的直流链路电压,而不管PEMFC输出电压的变化,具有不同的操作和负载条件。开发了所提出的基于PEMFC的能量系统的MATLAB / SIMULINK模型,以检查PEMFC和设计控制器的性能,在实际驱动周期场景的动态变化负载下。对于DC-DC升压转换器的控制器设计,使用可变K系数的数学概念。

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