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DC Microgrid with Wind Energy Conversion System Based on Switched Reluctance Generator Operating in Grid Connected Mode

机译:基于并网运行的开关磁阻发电机的直流微电网风能转换系统

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This article presents a proposal to control a DC microgrid with distributed wind energy conversion system (WECS) based on switched reluctance generator (SRG) operation in the grid connected mode. SRG is recommended to be used in applications with a wide range of speed, such as WECS. On the other hand, DC microgrids are gaining importance as an alternative for AC microgrids because DC grids are more reliable, efficient and simple to control. Since SRG generates direct current, these machines are natural candidates to operate in DC microgrids. In this paper, direct power control is applied to generate the maximum output power from a wind turbine with SRG. Proper distinction between low and high speeds of operation is presented. A bidirectional DC-DC converter is used to connect the wind turbine in the DC microgrid in order to achieve the SRG optimal excitation voltage while the DC bus is kept constant. A voltage source converter is employed to build up the DC bus from the AC grid. Energy storage system and customer loads are included in the simulation. The simulation results have shown that the proposed DC microgrid control with SRG penetration is feasible, reliable and achieve high performance in the grid connected mode, while the DC bus voltage is kept stable with the power flow working properly.
机译:本文提出了一种基于并网模式下基于开关磁阻发电机(SRG)操作的分布式风能转换系统(WECS)来控制DC微电网的建议。建议将SRG应用于速度范围广泛的应用,例如WECS。另一方面,直流微电网作为交流微电网的替代品正变得越来越重要,因为直流电网更加可靠,高效且易于控制。由于SRG产生直流电,因此这些机器自然可以在DC微电网中运行。在本文中,直接功率控制被应用来从具有SRG的风力发电机中产生最大输出功率。给出了低速和高速操作之间的适当区别。双向DC-DC转换器用于将风力涡轮机连接到DC微电网中,以便在保持直流母线恒定的同时获得SRG最佳激励电压。使用电压源转换器从交流电网构建直流总线。模拟中包括储能系统和客户负载。仿真结果表明,所提出的具有SRG穿透能力的直流微电网控制是可行的,可靠的,并且可以在并网模式下实现高性能,而直流母线电压可以在功率流正常工作的情况下保持稳定。

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