燃料电池-电双层电容混合电源系统频率特性敏感性分析

N. Katayama, K. Tanaka, S. Kogoshi
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引用次数: 2

摘要

聚合物电解质膜燃料电池(PEMFCs)作为新一代能源备受关注。为了延长pemfc的耐久性,我们开发了一种燃料电池-电双层电容器混合电源系统,以保持燃料电池电流恒定,并在研究负载电流变化与燃料电池电流扰动关系的基础上研究了动态响应。本文采用数值模拟的方法,分析了电路参数对FC-EDLC混合电力系统动态响应频率特性的敏感性。模型电路参数根据实际电路参数设定。我们选择EDLC的电容和ESR以及变换器EDLC端口的电感作为分析参数。EDLC的电容范围为1.12 mF ~ 56.0 F, ESR范围为70 mΩ ~ 1750 mΩ, EDLC端口电感范围为12.5 μH ~ 1250 μH。仿真结果表明:edlc的电容过大对电源系统的频率特性没有影响,而减小edlc的电容会降低电源系统的响应速度;降低ESR使电源系统在较低频率下的响应优于100 Hz附近,但当ESR为70 mΩ时,系统的稳定性会变差;在100hz到1khz的频率范围内,EDLC端口的电感主要影响其特性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Sensitivity analysis on frequency characteristics of a fuel cell-electrical double layer capacitor hybrid power source system
Polymer electrolyte membrane fuel cells (PEMFCs) attract much attention as next generation energy sources. To prolong durability of PEMFCs, which is one of the present challenges, we have developed a fuel cell-electrical double layer capacitor hybrid power source system to maintain the fuel cell current to a constant value, and investigated dynamic response with investigating relationship between load current changing and fuel cell current disturbance in our previous studies. In the present study sensitivity of circuit parameters on the frequency characteristics, which indicate dynamic response of the proposed FC-EDLC hybrid power system with developed multi-port bidirectional DC-DC converter has been analyzed by using numerical simulation. The model circuit parameters are set based on actual circuit's parameters. We chose electric capacitance and ESR of EDLCs and inductance of the EDLC port of the converter as parameters for analysis. The range of the electric capacitance of the EDLCs is from 1.12 mF to 56.0 F, the ESR of the EDLCs is from 70 mΩ to 1750 mΩ, and the inductance of the EDLC port is from 12.5 μH to 1250 μH. The simulation result yield the following conclusion: excessive electric capacitance of the EDLCs give no influence on the frequency characteristic, whereas decreasing electrical capacitance of the EDLCs leads to lower response speed of the power source system; reducing the ESR makes the response of the power source system better at the lower frequency than near 100 Hz, but when the ESR is 70 mΩ the stability of the system could become worse; the inductance of the EDLC port mainly affect the characteristic in the frequency range from 100 Hz to 1 kHz.
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