Adaptive IDA-PBC for Output Voltage Regulation of a Fuel Cell Hybrid Storage System

Carlo A Beltrán, Luis H. Diaz-Saldiernat, P. Martinez‐Rodriguez, Rafael Cisneros, G. Vazquez‐Guzman, D. Langarica‐Cordoba
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引用次数: 1

Abstract

In this paper, based on interconnection and damping assignment passivity-based control approach, a multi-loop adaptive controller for output voltage regulation of a hybrid system comprised of a proton exchange membrane fuel cell energy generation system and a hybrid energy storage system consisting of supercapacitors and batteries, is detailed. The control scheme relies on the design of two control loops, i.e., an outer loop for voltage regulation through current reference generation, and an inner loop for current reference tracking through duty cycle generation. Furthermore, an adaptive law based on immersion and invariance theory is designed to enhance the outer loop behavior through unknown load approximation. Finally, numeric simulation results show the correct performance of the adaptive multi-loop controller when sudden load changes are induced in the system.
燃料电池混合存储系统输出电压的自适应IDA-PBC调节
本文基于互连和阻尼分配无源控制方法,详细介绍了质子交换膜燃料电池发电系统和超级电容器与电池组成的混合储能系统输出电压调节的多环自适应控制器。该控制方案依赖于两个控制环的设计,即通过基准电流产生进行电压调节的外环和通过占空比产生进行基准电流跟踪的内环。在此基础上,设计了一种基于浸没和不变性理论的自适应律,通过未知负载逼近来增强系统的外环性能。最后,通过数值仿真验证了该自适应多环控制器在系统中引起突然负载变化时的正确性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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