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首页> 外文期刊>International journal of electrical power and energy systems >Multi-objective virtual inertia control of renewable power generator for transient stability improvement in interconnected power system
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Multi-objective virtual inertia control of renewable power generator for transient stability improvement in interconnected power system

机译:可再生能源发电系统多目标虚拟惯性控制提高暂态稳定性

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In the power system with high penetration of renewable power generators (RPG), although frequency performance can be improved by introducing virtual inertia control, the swing stability of the rotor angle is likely to be reduced due to the changed inertia distribution. The motion equation of an interconnected power system with RPGs is established firstly, and the transient energy function is then derived to analyse the impacts of virtual inertias on transient energy conversion. In this paper, the transient process of the rotor angle after the disturbances is divided into two periods of first swing and multi-swing, and the effects of virtual inertia on the system stability are then analysed in the two periods, respectively. Under the virtual inertia control, the RPGs are utilized not only to share accelerating energy with synchronous generators (SG), but also to provide additional decelerating energy for the reduction of the rotor angle variation during the first swing period. In addition, based on the eigenvalues analysis, the effects of virtual inertias on system damping are evaluated theoretically, and the virtual energy of RPGs is then regulated to damp the oscillations during the subsequent multi-swing period. Experimental tests on a hardware-in-the-loop platform of a two-area interconnected power system with high wind power penetration are carried out to validate the proposed control strategy. The results demonstrate that in addition to the basic frequency support function, the swing stability of rotor angle is also improved, thus greatly improving the reliability of the virtual inertia support.
机译:在具有高渗透率的可再生发电机(RPG)的电力系统中,尽管可以通过引入虚拟惯性控制来改善频率性能,但由于惯性分布的变化,转子角度的摆动稳定性可能会降低。首先建立了带有RPG的互联电力系统的运动方程,然后推导了暂态能量函数,以分析虚拟惯性对暂态能量转换的影响。本文将扰动后转子角的过渡过程分为两个阶段:第一阶段和多阶段,然后分别在这两个阶段分析了虚拟惯性对系统稳定性的影响。在虚拟惯性控制下,RPG不仅用于与同步发电机(SG)共享加速能量,而且还用于提供附加的减速能量,以减少第一个摆动周期中的转子角度变化。此外,基于特征值分析,从理论上评估了虚拟惯性对系统阻尼的影响,然后调节了RPG的虚拟能量以衰减随后的多次摆动周期中的振荡。在具有高风电渗透率的两区域互联电力系统的硬件在环平台上进行了实验测试,以验证所提出的控制策略。结果表明,除了基本的频率支持功能外,转子角的摆动稳定性也得到了改善,从而大大提高了虚拟惯性支持的可靠性。

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