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首页> 外文期刊>International journal of electrical power and energy systems >Real-time transient stability detection in the power system with high penetration of DFIG-based wind farms using transient energy function
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Real-time transient stability detection in the power system with high penetration of DFIG-based wind farms using transient energy function

机译:基于DFIG的风电场高渗透功率系统的实时瞬态稳定性检测使用瞬态能量函数

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摘要

In this paper, a new approach for real-time transient instability detection (TID) is presented. The purpose of presenting this approach is to have the lowest computational load and the highest accuracy and speed and to be suitable for real-time applications. The main idea is TID without directly calculating the unstable equilibrium point (UEP). In fact, transient instability is detected only by identifying the characteristics of the UEP and the kinetic energy function along with the potential energy boundary surface (PEBS) function. A new and standard single machine infinite bus system with high penetration of wind farms is used for simulation. First, dynamic modeling of various components of doubly fed induction generator (DFIG) and synchronous generator are described. Then, a model for the grid-connected DFIG is developed and a new PEBS-based index (NPI) for TID is presented. The NPI requires only post-fault data and can be applied as a general tool to any power system with any change in topology and operating conditions. Also, the impact of increasing the penetration of wind power, changing the operating conditions of the power system, different fault locations, and the power system strength on the transient stability is investigated. The simulation results show the effectiveness of the proposed approach for TID in a shorter time.
机译:本文提出了一种实时瞬态不稳定检测(TID)的新方法。提出这种方法的目的是具有最低的计算负载和最高精度和速度,适合实时应用。主要思想是TID而不直接计算不稳定的均衡点(UEP)。实际上,仅通过识别UEP的特性和动能函数以及势能边界表面(PEBB)功能来检测瞬态不稳定性。具有高渗透风电场的新型和标准的单机无限巴士系统用于仿真。首先,描述了双馈感应发生器(DFIG)和同步发电机的各种部件的动态建模。然后,开发了一种网格连接的DFIG的模型,并呈现了用于TID的新PEBS的索引(NPI)。 NPI只需要故障后数据,并且可以使用任何拓扑和操作条件的任何电力系统应用于任何电力系统。而且,研究了对风力渗透,改变电力系统的操作条件,不同故障位置和电力系统强度的影响,研究了对瞬态稳定性的影响。仿真结果表明,在较短的时间内提出了TID的方法的有效性。

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