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Integration of Wind Power and Wave Power Generation Systems Using a DC Microgrid

机译:使用直流微电网的风能和波浪能发电系统的集成

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摘要

In order to study the uncertainty and intermittent characteristics of wind power and wave power, this paper proposes an integrated wind and wave power generation system fed to an ac power grid or connected with an isolated load using a dc microgrid. The proposed dc microgrid connects with a wind power generator through a voltage-source converter (VSC), a wave power generator through a VSC, an energy storage battery through a bidirectional dc/dc converter, a resistive dc load through a load dc/dc converter, and an ac power grid through a bidirectional grid-tied inverter. The studied integrated wind and wave system joined with the dc microgrid is modeled and simulated using the written program based on MATLAB/Simulink. Root-loci plots of the studied system under various speeds of the wave generator are analyzed. To examine the fundamental operating characteristics of the studied integrated system joined with the dc microgrid, a laboratory-scale platform is also established. Comparative simulation and experimental results reveal that the studied integrated system can maintain stable operation to supply power under different operating conditions using the proposed dc microgrid.
机译:为了研究风能和波浪能的不确定性和间歇性特征,本文提出了一种集成的风力和波浪能发电系统,该系统馈入交流电网或使用直流微电网与隔离的负载相连。拟议的直流微电网通过电压源转换器(VSC)与风力发电机,通过VSC的波能发电机,通过双向dc / dc转换器的储能电池,通过负载dc / dc的电阻性直流负载连接转换器,以及通过双向并网逆变器的交流电网。使用基于MATLAB / Simulink的编写程序对与直流微电网连接的已研究的集成风电和风电系统进行建模和仿真。分析了在波浪发生器不同速度下所研究系统的根轨迹图。为了检查所研究的集成系统与直流微电网的基本操作特性,还建立了实验室规模的平台。对比仿真和实验结果表明,使用所建议的直流微电网,所研究的集成系统可以在不同的运行条件下维持稳定的运行状态,以提供电源。

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