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Study on the Voltage Stabilization Technology Using Photovoltaic Generation Simulator in Three-Level Bipolar Type DC Microgrid

机译:三级双极式DC微电网中光伏发电模拟器电压稳定技术研究

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摘要

Voltage stabilization is an essential component of power quality in low voltage DC (LVDC) microgrid. The microgrid demands the interconnection of a number of small distributed power resources, including variable renewable generators. Therefore, the voltage can be maintained in a stable manner through the control of these distributed generators. In this study, we did research on the new advanced operating method for a photovoltaic (PV) simulator in order to achieve interconnection to a bipolar LVDC microgrid. The validity of this voltage stabilization method, using the distributed generators, is experimentally verified. The test LVDC microgrid is configured by connecting the developed PV simulator and DC load, DC line, and AC/DC rectifier for connecting the main AC grid. The new advanced control method is applied to the developed PV simulator for the bipolar LVDC grid in order to stabilize the gird voltage. Using simulation results, the stabilization of the grid voltage by PV simulator using the proposed control method is confirmed the through the simulation results in various operation scenarios.
机译:电压稳定化是低压DC(LVDC)微电网中电能质量的基本组件。 MicroGrid需要多个小型分布式电力资源的互连,包括可变可再生发电机。因此,通过控制这些分布式发电机可以以稳定的方式保持电压。在这项研究中,我们对光伏(PV)模拟器的新先进操作方法进行了研究,以实现与双极LVDC微电网的互连。使用分布式发电机的该电压稳定方法的有效性是通过分布式发电机进行实验验证的。测试LVDC MicroGrid通过连接开发的PV模拟器和直流负载,直流线路和AC / DC整流器来配置用于连接主AC电网。新的先进控制方法应用于Bipolar LVDC网格的开发的PV模拟器,以稳定栅栏电压。使用仿真结果,通过使用所提出的控制方法通过PV模拟器稳定电网电压通过模拟导致各种操作场景进行了确认。

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