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Scaling Version of Kundur’s Two-Areas System for Electromechanical Oscillations Representation

机译:Kundur的两区域系统的缩放版本,用于机电振荡表示

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In this paper, the problem of real implementation of a transmission grid was addressed. In today’s modern society, electricity is the most important form of energy for industry and society. A reliable and stable electrical power system is therefore essential. The growing amount of renewable energy sources leads to wheeling electrical power over long distances and to the growth in power electronics-based generation. Both affect the behavior of the electrical power system. The objective of this paper is the development of a scaled version of the Kundur’s two areas system in order to implement it in a real laboratory. Additionally, this setup allows to change the rotational inertia and analyze all terminal quantities with phasor measurement units. The control structure of this island grid should reflect the reality as close as possible. All this together enables to study dynamic phenomena with a real small power system. With this laboratory implementation electromechanical swings such as inter-area oscillations after disconnecting a tie-line, changing loads and generation or tripping a synchronous machine can be shown.
机译:在本文中,解决了实际实现输电电网的问题。在当今的现代社会中,电力是工业和社会最重要的能源形式。因此,可靠而稳定的电力系统至关重要。可再生能源的数量不断增长,导致长途运输电力不断增长,并导致基于电力电子技术的发电量增长。两者都会影响电力系统的行为。本文的目的是开发Kundur两区系统的缩放版本,以便在真正的实验室中实施该系统。此外,该设置允许更改旋转惯量并使用相量测量单元分析所有终端量。该孤岛网格的控制结构应尽可能接近现实。所有这些共同使您能够使用真正的小型电源系统研究动态现象。通过这种实验室实施方式,可以显示出机电摆动,例如断开联络线,改变负载,发电或使同步电机跳闸后的区域间振荡。

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