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Operational Adaptability of PEM Fuel Cell for Optimal Voltage Regulation With Maximum Power Extraction

机译:PEM燃料电池的运行适应性,最大功率提取的最佳电压调节

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Polymer electrolyte membrane fuel cell (PEMFC), because of faster response, portability and the low operating temperature has found wide usage in applications requiring regulated output voltage. Alongwith voltage regulation, optimum stack efficiency is important for reliable operation. Overall, the maximum efficiency point (MEP) operation and voltage regulation need to be achieved while restricting the PEMFC operation till maximum power point (MPP). This demands operational adaptability of PEMFC over a wider range, to meet the desired levels of voltage regulation, maximum efficiency and MPP operation. However, achieving all the objectives simultaneously is challenging since operating points corresponding to the objectives differ. This paper proposes a control strategy that achieves operation dependent adaptability of PEMFC between the objectives as per the demand. The adaptability in controller tuning for MPP and voltage regulation has been formulated as multi-objective optimization (MOO) problem with a constraint on controller parameters, for allowing the PEMFC operation closer to MEP. The solution of MOO problem provides a set of controller configurations, each achieving different operating scenarios/objectives of the PEMFC system. Compared to the existing works aiming at either of the objectives, the effectiveness of the proposed approach is reflected in terms of simultaneous attainment of all the objectives.
机译:聚合物电解质膜燃料电池(PEMFC),由于响应更快,可移植性和低操作温度在需要调节输出电压的应用中发现了很多。遍历电压调节,最佳堆栈效率对于可靠的操作很重要。总的来说,需要在限制PEMFC操作到最大功率点(MPP)的同时实现最大效率点(MEP)操作和电压调节。这要求PEMFC在更广泛的范围内运行适应性,以满足所需的电压调节水平,最大效率和MPP操作。然而,由于对应于目标的操作点不同,同时实现所有目标都具有挑战性。本文提出了一种控制策略,可根据需求实现PEMFC在目标之间的操作依赖性适应性。用于MPP和电压调节的控制器调整的适应性已被制定为具有对控制器参数的约束的多目标优化(MOO)问题,用于允许PEMFC操作更靠近MEP。 Moo问题的解决方案提供了一组控制器配置,每个控制器配置都实现了PEMFC系统的不同操作场景/目标。与旨在目的任何一个目标的现有作品相比,拟议方法的有效性反映在同时实现所有目标方面。

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