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A new control strategy for a higher order proton exchange membrane fuel cell system

机译:高阶质子交换膜燃料电池系统的新控制策略

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In this paper, a new cascade control strategy is proposed for a higher order Proton Exchange Membrane (PEM) Fuel Cell system for improving the performance on the basis of stack voltage. In the proposed strategy, stack voltage is considered as the primary objective and maintaining oxygen excess ratio value as a secondary aim, by manipulating the air compressor voltage. A higher-order PEMFC model is reduced to lower order integer and fractional models using varied model reduction techniques, which are then used to realize the primary as well as secondary controllers. Both integer and fractional order PID controllers are designed for the reduced order models and then implemented for the higher order system. The control performance is evaluated for disturbance rejection, system model mismatch and better controlled output for continuous random disturbance on the basis of Integral Absolute Error and controller effort. The outcome of the proposed control strategy is advantageous in terms of disturbance rejection, robustness, parameter uncertainty and reduction of plant-model mismatch. (C) 2020 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:在本文中,提出了一种新的级联控制策略,用于更高阶质子交换膜(PEM)燃料电池系统,用于基于堆叠电压改善性能。在所提出的策略中,通过操纵空气压缩机电压,堆叠电压被认为是作为辅助目标的主要目标并保持氧过度比值。使用各种模型减少技术将更高级PEMFC模型减少到下订单整数和分数模型,然后用于实现主控制器以及二级控制器。整数和分数级PID控制器都是针对减少的订单模型设计,然后为更高阶系统实现。在基于整体绝对误差和控制器工作的基础上,评估对干扰抑制,系统模型不匹配和更好的控制输出的控制性能。拟议控制策略的结果在扰动抑制,鲁棒性,参数不确定性和植物模型失配的方面是有利的。 (c)2020氢能源出版物LLC。 elsevier有限公司出版。保留所有权利。

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