Wide-Area Damping Controller Design Based on the Frequency Domain Self-Excitation Method

Author:

Gao Lei12,Ma Yanchao3,Nie Yonghui2,Xu Shiyun1ORCID,Chu Xiaojie1,Peng Long1

Affiliation:

1. China Electric Power Research Institute, Beijing 100192, China

2. Northeast Electric Power University, Jilin 132012, Jilin Province, China

3. State Grid Liaoning Power Co., Ltd., Yingkou Power Supply Company, Yingkou 115000, China

Abstract

In this paper, a wide-area DC damping controller design method is proposed to damp the weak interarea oscillation modes. First, the low-order power system control model identification method is proposed based on the frequency domain self-excitation method to obtain the dominant modes and other related information. In what follows, the identified model is transformed into a low-order state space equation. By comparing the geometric metrics of different schemes, the various input signals and installation locations of the controller are selected. Furthermore, the damping controller parameter calculation is realized based on the self-excitation frequency domain identification method, which does not depend on the detailed model of the system. The design process is simple and it is easy to apply in the practical engineering of large-scale complex power grids. The applicability and effectiveness of the proposed controller design method are demonstrated through simulations of a two-area four-generator power system.

Funder

Young Elite Scientists Sponsorship Program

Publisher

Hindawi Limited

Subject

Electrical and Electronic Engineering,Computer Science Applications,Modeling and Simulation

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