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Performance Analysis of a Variable-speed Wind and Fuel Cell-based Hybrid Distributed Generation System in Grid-connected Mode of Operation

机译:并网运行模式下基于风能和燃料电池的变速混合动力分布式发电系统的性能分析

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This article presents the performance study of a variable-speed wind and solid oxide fuel cell-based hybrid distributed generation system, along with the energy storage devices in the grid connected mode of operation. The developed model has a salient feature of utilizing fluctuating output power of wind systems to produce hydrogen and also to charge the ultra capacitor. The presented model in the article also uses the stored energy in the ultra capacitor to compensate for the slow response time of the fuel cell. The distributed generation systems and energy storage devices considered in this study are integrated at common distributed generation links to form the hybrid system. The hybrid system is interfaced to the grid through the three-phase voltage source inverter in this article. The detailed modeling of the individual components of the hybrid distributed generation system, along with the necessary power electronic converter control schemes, are presented. The simulation results reported in this article show the effective performance of the hybrid model to produce reliable, low-cost electricity and hydrogen from the variable wind generation system.
机译:本文介绍了基于风速和固体氧化物燃料电池的混合动力分布式发电系统的性能研究,以及并网运行模式下的储能装置。开发的模型的显着特征是利用风力系统的波动输出功率来产生氢并为超级电容器充电。本文中提出的模型还利用超级电容器中存储的能量来补偿燃料电池的缓慢响应时间。本研究中考虑的分布式发电系统和能量存储设备集成在常见的分布式发电链路上,以形成混合系统。本文中,混合系统通过三相电压源逆变器连接到电网。介绍了混合分布式发电系统各个组件的详细建模,以及必要的电力电子转换器控制方案。本文报道的仿真结果显示了混合模型从可变风力发电系统产生可靠的低成本电力和氢气的有效性能。

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