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Review on Transient Power Angle Stability of System with Doubly-fed Induction Generator Based on Virtual Synchronous Generator

机译:基于虚拟同步发电机的双馈感应发电机系统瞬态电源角稳定性综述

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As the penetration rate of new energy increases, the inertia and damping of the power system gradually decrease, and stability problems become increasingly prominent. Virtual Synchronous Generator (VSG) technology has gained widespread attention and application as an effective means to improve the ability of new energy power generation systems to actively support the power grid, therefore, the research of impact of VSG on system transient stability has also become a hot spot. Firstly, analysis method of transient angle stability of power system is introduced, then the influence of conventional Doubly-fed Induction Generator (DFIG) on transient angle stability of system is analyzed, based on which, key issues and research status of transient angle stability of system with VSG-based DFIG are investigated in detail, finally prospection of further study of transient angle stability of system with VSG-based DFIG are proposed.
机译:随着新能源的渗透率增加,电力系统的惯性和阻尼逐渐减小,稳定性问题变得越来越突出。虚拟同步发电机(VSG)技术已获得广泛的关注和应用作为提高新能源发电系统积极支持电网的能力的有效手段,因此,VSG影响对系统瞬态稳定的影响也已成为一个热点。首先,介绍了电力系统瞬态角度稳定性的分析方法,然后分析了传统的双馈感应发生器(DFIG)对系统瞬态角度稳定性的影响,基于该瞬态角度稳定性的关键问题和研究状态提出了具有基于VSG的DFIG的系统,最后提出了利用基于VSG的DFIG对系统瞬态角度稳定性进行进一步研究的借鉴。

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