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Active and Reactive Power Sharing Between Grid and Voltage Controlled Inverter Considering the Link Inductor in a Distributed Generating System

机译:考虑到分布式发电系统中的链路电感器,电压和电压控制逆变器之间的主动和无功功率共用

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This paper presents the steady state performance of active and reactive power flow between grid and inverter as voltage controller through a link inductor in distributed generating system. The inverter is synchronized and connected to the network through a link inductor that connecting the output terminal of inverter with the grid. In this paper, the design value of a link inductor between inverter and grid is also included. The design value of the link inductor is performed on two conditions, e.g., at the power angle 5 ° and approximately 90°. The link inductor value that gives the best performance on the system for the household scale DG application with 5 kW capacity is obtained at the small power angle 5°. With the appropriate design value of the link inductor in distributed generating system is presented in this paper, the best performance on the system can be obtained.
机译:本文介绍了通过分布式发电系统中的链路电感器电压和电压控制器之间的主动和无功功率流动的稳态性能。逆变器通过链路电感器同步并连接到网络,将逆变器的输出端与网格连接到网络。在本文中,还包括逆变器和网格之间的链路电感器的设计值。链路电感器的设计值在两个条件下执行,例如,在电源角5°和大约90°处。在小功率角5°处获得为为家庭量表DG应用提供有5 kW容量的系统的最佳性能的链路电感值。在本文提出了分布式发电系统中的链路电感的适当设计值,可以获得系统上的最佳性能。

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