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Partial Grid Forming Concept for 100 Inverter-Based Transmission Systems

机译:局部电网形成概念100%基于逆变器的传输系统

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With the current trends in renewable energy integration, the concept of a 100% inverter-based power system is becoming more of a reality. However, the existing Voltage Source Converter (VSC) control schemes for such systems focus mostly on the operation of low-voltage microgrids, which have different requirements from the transmission system perspective. This paper proposes a new classification of VSC control strategies depending on their mode of operation. Then, the concept of partial grid forming VSC is introduced and it is shown that a system with zero rotational inertia can operate without a dedicated grid-forming VSC unit, but rather with partial forming of key system characteristics distributed across different VSC units. The performance of this approach is tested on detailed VSC models developed in both MATLAB Simulink and virtual Hardware-In-the-Loop (vHIL) platforms. Furthermore, an investigation towards necessary converter and network criteria for providing a stable system under the proposed control concepts is presented.
机译:随着目前可再生能源集成的趋势,100%基于逆变器的电力系统的概念变得越来越成为现实。然而,对于这种系统的现有电压源转换器(VSC)控制方案主要聚焦在低压微电网的操作上,这与传输系统的透视具有不同的要求。本文提出了根据其操作模式进行了新的VSC控制策略分类。然后,引入了部分网格形成VSC的概念,并且示出了旋转惯性的系统可以在没有专用网格形成VSC单元的情况下操作,而是通过分布在不同VSC单元的关键系统特征的部分形成。在Matlab Simulink和虚拟硬件循环(VHIL)平台中开发的详细VSC模型上测试了这种方法的性能。此外,提出了对在所提出的控制概念下提供稳定系统的必要转换器和网络标准的调查。

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