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The modeling and simulation of thermal based modified solid oxide fuel cell (SOFC) for grid-connected systems

机译:并网系统中基于热的改性固体氧化物燃料电池(SOFC)的建模和仿真

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This paper presents a thermal based modified dynamic model of a Solid Oxide Fuel Cell (SOFC) for grid-connected systems. The proposed fuel cell model involves ohmic, activation and concentration voltage losses, thermal dynamics, methanol reformer, fuel utilization factor and power limiting module. A power conditioning unit (PCU), which consists of a DC-DC boost converter and a DC-AC voltage-source inverter (VSI), their controller, transformer and filter, is designed for gridconnected systems. The voltage-source inverter with six Insulated Gate Bipolar Transistor (IGBT) switches inverts the DC voltage that comes from the converter into a sinusoidal voltage synchronized with the grid. The simulations and modeling of the system are developed on Matlab/Simulink environment. The performance of SOFC with converter is examined under step and random load conditions. The simulation results show that the designed boost converter for the proposed thermal based modified SOFC model has fairly followed different DC load variations. Finally, the AC bus of 400 Volt and 50 Hz is connected to a single-machine infinite bus (SMIB) through a transmission line. The real and reactive power managements of the inverter are analyzed by an infinite bus system. Thus, the desired nominal values are properly obtained by means of the inverter controller.
机译:本文介绍了用于并网系统的固体氧化物燃料电池(SOFC)的基于热的改进动态模型。拟议的燃料电池模型涉及欧姆,激活和浓度电压损失,热力学,甲醇重整器,燃料利用率和功率限制模块。专为并网系统设计的功率调节单元(PCU),包括一个DC-DC升压转换器和一个DC-AC电压源逆变器(VSI),其控制器,变压器和滤波器。带有六个绝缘栅双极晶体管(IGBT)开关的电压源逆变器将来自转换器的DC电压逆变为与电网同步的正弦电压。该系统的仿真和建模是在Matlab / Simulink环境下开发的。带有转换器的SOFC的性能在有级和随机负载条件下进行了检查。仿真结果表明,针对所提出的基于热的改进型SOFC模型设计的升压转换器已经相当遵循了不同的直流负载变化。最后,通过传输线将400伏和50赫兹的交流总线连接到单机无限总线(SMIB)。通过无限总线系统分析逆变器的有功和无功功率管理。因此,借助于逆变器控制器适当地获得了期望的标称值。

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