PEMFC建模及性能分析控制
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1.内蒙古工业大学电力学院 呼和浩特 010080;2.内蒙古工业大学能源与动力工程学院 呼和浩特 010051

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TM911.4

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PEMFC modeling and performance analysis control
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1. School of Electrical,Inner Mongolia University of Technology,Hohhot 010080, China; 2. School of Energy and Power Engineering,Inner Mongolia University of Technology, Hohhot 010051, China

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    摘要:

    探明质子交换膜燃料电池(PEMFC)输出性能尤为重要,现有PEMFC模型复杂,内部阐述不详细。以Srinivasan模型为基础,建立欧姆极化电压、浓度差极化电压、活化极化电压、各自详细模型及输出电压模型,分析其与电流密度的关系。以控制变量法研究电堆温度、氢气压力、氧气压力、极限电流等关键参数对单体电池电压影响。考虑PEMFC实际应用情况,设计了采用电压电流双闭环控制的Buck变换器,基于状态空间平均法,建立变换器S域小信号模型,得出被控对象传递函数,加入补偿控制器,改善输出电压性能。通过PSCAD/EMTDC仿真验证所建模型及控制策略的有效性、正确性。结果表明:气体(氢气、氧气)压力、电推温度及极限电流的增大,使得输出电压增加。应用该控制策略,额定电压(70V)输入时,调整时间5.5ms到达目标值(35V),负载由30Ω突变为15Ω时,扰动电压尖峰5.4V,重新稳定在目标值时间64ms。该策略稳/动态特性良好,正确有效,对工程设计有一定参考意义。

    Abstract:

    Proton exchange membrane fuel cell (PEMFC) output performance is particularly important. The existing PEMFC model is complex and the internal description is not detailed. Based on Srinivasan model, ohmic polarization voltage, concentration difference polarization voltage, activation polarization voltage, their detailed models and output voltage models are established to analyze their relationship with current density. The stack temperature, hydrogen pressure, oxygen pressure and limit electricity are studied by control variable method Influence of key parameters such as current on cell voltage. Considering the practical application of PEMFC, a buck converter with voltage and current double closed-loop control is designed. Based on the state space average method, the s-domain small signal model of the converter is established, the transfer function of the controlled object is obtained, and the compensation controller is added to improve the output voltage performance. PSCAD / EMTDC simulation is used to verify the effectiveness and correctness of the model and control strategy. The results show that the output voltage increases with the increase of gas (H2, O2) pressure, electric push temperature and limit current. When the rated voltage (70V) is input, the adjustment time is 5.5ms to reach the target value (35V), when the load changes from 30 Ω to 15 Ω, the peak of disturbance voltage is 5.4v, and the time to stabilize at the target value is 64ms. The strategy has good stable / dynamic characteristics, correct and effective, and has certain reference significance for engineering design.

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王季康,李 华,彭宇飞,李晓燕,张新宇. PEMFC建模及性能分析控制[J].电子测量技术,2022,45(8):27-34

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  • 在线发布日期: 2024-05-10
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