论文标题
一种统一的分析方法,用于量化基于逆变器的资源的三种类型的快速响应
A Unified Analytical Method to Quantify Three Types of Fast Frequency Response from Inverter-based Resources
论文作者
论文摘要
借助更多基于逆变器的资源(IBR),我们的电源系统在N-1偶然性之后具有较低的频率NADIR,并且可能发生不希望的频率下载荷(UFL)。为了应对这一挑战,可以对IBR进行编程,以提供至少三种类型的快速响应(FFR),例如步骤响应,比例响应(P/F下垂响应)和衍生响应(合成惯性)。但是,这些异质FFR挑战了功率系统频率动力学的研究。因此,本文开发了一种分析频率NADIR预测方法,该方法允许考虑IBR提供的所有三种潜在形式的FFR。提出的方法在N-1生成绊倒意外情况下提供了快速准确的频率NADIR估计。我们的方法基于频率NADIR的封闭形式解决方案,该频率是从二阶系统频率响应模型求解的,考虑到调速器动力学和三种类型的FFR。该模拟在具有不同类型的FFR的IEEE 39总线系统中导致仿真表明,在各种干扰下,提出的方法提供了对频率NADIR的准确而快速的预测。
With more inverter-based resources (IBRs), our power systems have lower frequency nadirs following N-1 contingencies, and undesired under-frequency load shedding (UFLS) can occur. To address this challenge, IBRs can be programmed to provide at least three types of fast frequency response (FFR), e.g., step response, proportional response (P/f droop response), and derivative response (synthetic inertia). However, these heterogeneous FFR challenge the study of power system frequency dynamics. Thus, this paper develops an analytical frequency nadir prediction method that allows for the consideration of all three potential forms of FFR provided by IBRs. The proposed method provides fast and accurate frequency nadir estimation after N-1 generation tripping contingencies. Our method is grounded on the closed-form solution for the frequency nadir, which is solved from the second-order system frequency response model considering the governor dynamics and three types of FFR. The simulation results in the IEEE 39-bus system with different types of FFR demonstrate that the proposed method provides an accurate and fast prediction of the frequency nadir under various disturbances.