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Beyond low-inertia systems: Massive integration of grid-forming power converters in transmission grids

机译:超出低惯性系统:在变速器网格中的电网形成电力转换器的大规模集成

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As renewable sources increasingly replace existing conventional generation, the dynamics of the grid drastically changes, posing new challenges for transmission system operations, but also arising new opportunities as converter-based generation is highly controllable in faster timescales. This paper investigates grid stability under the massive integration of grid-forming converters. We utilize detailed converter and synchronous machine models and describe frequency behavior under different penetration levels. First, we show that the transition from 0% to 100% can be achieved from a frequency stability point of view. This is achieved by retuning power system stabilizers at high penetration values. Second, we explore the evolution of the nadir and RoCoF for each generator as a function of the amount of inverter-based generation in the grid. This work sheds some light on two major challenges in low and noinertia systems: defining novel performance metrics that better characterize grid behaviour, and adapting present paradigms in PSS design.
机译:随着可再生来源越来越替代现有的常规生成,网格的动态大大变化,对传输系统操作构成了新的挑战,而且由于较快的时间尺寸,这也产生了新的机会。本文调查了电网形成转换器的大规模集成下的电网稳定性。我们利用详细的转换器和同步机模型,并在不同的穿透水平下描述频率行为。首先,我们表明,从频率稳定性的角度来看,可以实现0%至100%的转换。这是通过在高穿透值处的固化电力系统稳定器来实现的。其次,我们为每个发电机探索Nadir和Rocof的演变,作为网格中基于逆变器的产生量的函数。这项工作在低和Noinertia Systems中的两个主要挑战中揭示了一些主要的挑战:定义更好地表征网格行为的新型性能指标,并在PSS设计中调整目的范式。

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