Fundamental Analysis of Grid-Forming Converters Enhanced with Feedforward Controls

M. Ippolito, R. Musca, G. Zizzo
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引用次数: 4

Abstract

The grid-forming control for power converters can be enhanced by proper feedforward terms included in the active power control loop. Two basic structures are identified, the feedforward angle and the feedforward frequency. The formal analysis of the transfer functions reveals a structural similarity. The two schemes exhibit however a fundamental difference in their transient capabilities. The grid-forming controls are characterized with the introduction of two specific factors, for the direct assessment of the inertia and the damping which can be provided by the grid-forming converter. The sensitivity analysis of the two feedforward schemes indicates that the enhancement of the transient performances of the control results in a reduction of the inertia synthetically provided by the converter. The results show that the feedforward frequency is significantly more sensitive than the feedforward angle to the feedforward term, and that the feedforward frequency presents a suitable range of damping capabilities but limited possibility of improving the inertial capability. The considerations derived in the analytical investigations are finally verified with a simulation-based application case, implementing a detailed EMT model in the Simscape toolbox of Matlab/Simulink.
基于前馈控制的成形网格变流器的基本分析
通过在有源控制回路中加入适当的前馈项,可以增强变流器的成网控制。确定了两种基本结构:前馈角和前馈频率。传递函数的形式分析揭示了结构上的相似性。然而,这两种方案在瞬态能力上表现出根本的区别。网格成形控制的特点是引入了两个特定的因素,即直接评估由网格成形转换器提供的惯性和阻尼。对两种前馈方案的灵敏度分析表明,控制暂态性能的提高导致变换器综合提供的惯性减小。结果表明,前馈频率对前馈项的敏感性明显高于前馈角度,前馈频率具有合适的阻尼能力范围,但改善惯性能力的可能性有限。最后,通过基于仿真的应用案例验证了分析研究中得出的考虑因素,并在Matlab/Simulink的Simscape工具箱中实现了详细的EMT模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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