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首页> 外文期刊>International journal of hydrogen energy >Dual loop controllers using PI, sliding mode and flatness controls applied to low voltage converters for fuel cell applications
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Dual loop controllers using PI, sliding mode and flatness controls applied to low voltage converters for fuel cell applications

机译:使用PI,滑模和平坦度控制的双回路控制器应用于燃料电池应用的低压转换器

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This paper treats the design, control and implementation of a non-isolated low voltage DC/DC converter with a high voltage ratio coupled a fuel cell stack and a DC bus which can be used in transport applications. The proposed converter consists of two cascade stages non isolated DC/DC converters. The first stage is an interleaved boost converter and the second is a double dual-interleaving boost converter. The selection of each stage is based on the efficiency of the converter with a high output voltage, a small input current ripple, and an output voltage ripple. The control of the converters is ensured by a dual loop control that contains for the first step a voltage loop with a linear PI controller and a fast current loop using a non-linear sliding controller for both converters. After that, the voltage loop of the first stage is replaced by an energy loop based on a differential flatness control approach. The simulation of the proposed control is performed under Matlab-Simulink environment and validated by experimental results using small-scale test bench with dSPACE-1104 card. This paper presents and comments the introduced device and discusses the obtained results. (C) 2016 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:本文讨论了具有高传动比的非隔离低压DC / DC转换器的设计,控制和实现,该转换器将燃料电池堆和DC总线耦合在一起,可用于交通运输应用。拟议的转换器包括两个级联级非隔离式DC / DC转换器。第一级是交错式升压转换器,第二级是双双交错式升压转换器。每级的选择基于具有高输出电压,小输入电流纹波和输出电压纹波的转换器效率。通过双回路控制来确保对转换器的控制,该双回路控制首先包括一个带有线性PI控制器的电压回路和一个使用非线性滑动控制器的快速电流回路,用于两个转换器。此后,第一阶段的电压环路被基于差分平坦度控制方法的能量环路所取代。拟议控制的仿真是在Matlab-Simulink环境下进行的,并通过使用带有dSPACE-1104卡的小型测试台的实验结果进行了验证。本文介绍并评论了引入的设备,并讨论了获得的结果。 (C)2016氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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