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首页> 外文期刊>International journal of hydrogen energy >Fractional order modeling and two loop control of PEM fuel cell for voltage regulation considering both source and load perturbations
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Fractional order modeling and two loop control of PEM fuel cell for voltage regulation considering both source and load perturbations

机译:考虑源和负载扰动的电压调节PEM燃料电池的分数阶建模和两回路控制

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The growing demand for renewable energy sources has favored attention towards fuel cell and in particular towards Polymer Electrolyte Membrane Fuel Cell (PEMFC) as an alternative energy source. Despite the advantage of possessing high current density, standalone isolated fuel cell operate at low voltage and the output is heavily dependent on the operating condition. This demands the integration of fuel cells with suitable power conditioning units. The present work aims at designing a controller which achieves the objective of regulated output voltage irrespective of variation in both load and source operating condition. The design and integration of the converter with PEMFC necessitates the development of a mathematical model, which can represent the PEMFC dynamics under different operating conditions. PEMFCs are known to exhibit distributed dynamics and possess long term memory, which are more accurately represented by fractional calculus. In this regard, a hybrid optimization based approach for fractional order modeling of PEMFC has been proposed. Further using the model, a fractional order Proportional Integral (FOPI) controller has been designed for regulating the load voltage. The presence of an extra tuning parameter in FOPI allows greater flexibility in achieving the system specification as compared to the classical Integer Order Proportional Integral (IOPI) controller. The effectiveness of the proposed FOPI controller for PEMFC fed PWM DC/DC converter has been validated under varying operating condition of the PEMFC and load perturbations in real time environment. (C) 2018 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:对可再生能源日益增长的需求吸引了人们对燃料电池的关注,尤其是作为替代能源的聚合物电解质膜燃料电池(PEMFC)。尽管具有高电流密度的优点,但独立的隔离式燃料电池仍在低电压下运行,并且输出在很大程度上取决于运行条件。这要求将燃料电池与合适的功率调节单元集成在一起。本工作旨在设计一种控制器,该控制器无论负载和电源工作条件的变化如何都可达到稳定的输出电压。转换器与PEMFC的设计和集成需要开发数学模型,该数学模型可以表示不同操作条件下的PEMFC动态。已知PEMFC具有分布式动力学特性,并具有长期记忆,可以用分数演算更准确地表示。在这方面,已经提出了基于混合优化的PEMFC分数阶建模方法。进一步使用该模型,设计了分数阶比例积分(FOPI)控制器来调节负载电压。与经典的整数阶比例积分(IOPI)控制器相比,FOPI中额外的调整参数的存在为实现系统规范提供了更大的灵活性。针对PEMFC供电的PWM DC / DC转换器的FOPI控制器的有效性已在PEMFC的各种工作条件和实时环境中的负载扰动下得到了验证。 (C)2018氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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