arrow
Return

Finite-Difference-Impedance Method for Time-Delay Systems

delete2022-01-01
delete3
PRE
AI
J
Juan Segundo‐Ramírez
J
Julio Hernández-Ramírez *
N
Nancy Visairo-Cruz
C
C. Nunez
DOI:10.1109/ACCESS.2022.3211951delete
deleteOriginal
deleteOriginal request for help
deleteShare
deleteSave
Abstract

Abstract

En 中文
The stability issues assessment by the impedance-based method demands the computation of accurate small-signal models. However, obtaining impedance models can be a time-consuming task if analytical models or the perturbation-based method are used. Especially in large-scale, poorly damped, distributed, and frequency-dependent parameter systems. A third approach, which has been less explored, is based on numerical derivative approximations, rather than analytical equations or time-domain simulations. This approach works with large-scale systems, avoiding tedious mathematical expressions and large recursive time-domain simulations. As a step-forward in this approach, this paper proposes a numerical-oriented method, based on the finite-difference method, to compute impedance models of time-delay power-electronics-based power systems. An outstanding feature of the proposal is the capability to incorporate the exact delays into the numerical models of impedance without resorting to approximations nor increasing the size of the system model. We compare the proposed method with the analytical and perturbation methods using a grid-connected microgrid with two power electronic inverters as a test system. The results confirm the correct performance of the proposal.
Keywords:
Impedance
Computational modeling
Numerical models
Delays
Mathematical models
Analytical models
Numerical stability
Finite difference methods
Impedance-based method
small-signal stability
VSC-based systems
time-delay

Journal

IEEE Access cover
IEEE Access
IF:
3.6
Papers:
9.8W
Citations:
29.4W

Organization

U
universidad autonoma de san luis potosi
Scholars:
4.8K
Papers: 3.1K
Citations: 2
Cited Papers

Cited Papers

errShare
errSave
Frequency Domain Methods for Accuracy Assessment of Wideband Models in Electromagnetic Transient Stability Studies
err2020-02-01
err23
errOAAI
errSegundo-Ramirez, Juan; Bayo-Salas, Alejandro; Esparza, Miguel; Beerien, Jef; Gomez, Pablo
errShare
errSave
Sequence Impedance Modeling and Stability Assessment for Load Converters in Weak Grids
err2021-05-01
err21
PREAI
errLiu, Yifeng; Zhou, Xiaoping; Yu, Haoqi; Hong, Lerong; Xia, Haitao; Yin, Hanhang; Chen, Yandong; Zhou, Leming; Wu, Wenhua
errShare
errSave
A Complete HSS-Based Impedance Model of MMC Considering Grid Impedance Coupling
err2020-12-01
err81
PREAI
errXu, Zigao; Li, Binbin; Han, Linjie; Hu, Junlin; Wang, Shengbo; Zhang, Shiguang; Xu, Dianguo
errShare
errSave
errShare
errSave
Sequence Impedance Modeling and Stability Comparative Analysis of Voltage-Controlled VSGs and Current-Controlled VSGs
err2019-08-01
err156
PREAI
errWu, Wenhua; Chen, Yandong; Zhou, Leming; Luo, An; Zhou, Xiaoping; He, Zhixing; Yang, Ling; Xie, Zhiwei; Liu, Jinming; Zhang, Mingmin
errShare
errSave
Impedance Modeling and Stability Analysis of DFIG Wind Farm With LCC-HVDC Transmission
err2022-03-01
err15
PREAI
errWang, Miaoyuan; Chen, Yu; Dong, Xiaoliang; Hu, Sile; Liu, Bin; Yu, Samson S.; Ma, Hongwei; Zhang, Xi; Liu, Xiangdong
errShare
errSave
researcher View more