TY - GEN
T1 - Homogeneity Realization for Cluster of Heterogeneous Grid-forming Inverters
AU - Umar, Muhammad F.
AU - Hosseinzadehtaher, Mohsen
AU - Shadmand, Mohammad B.
N1 - Publisher Copyright:
© 2021 IEEE.
PY - 2021/11/10
Y1 - 2021/11/10
N2 - This paper presents a control scheme for enforcing coherency in a cluster of grid-forming inverters with heterogenous characteristics. Increasing penetration of distributive generation (DG) drives the conventional grid towards more complex structure and a new concept with heterogenous characteristics known as power electronics dominated grid (PEDG). Thus, it becomes more challenging to optimize and perform various analysis without an accurate model that mimics the large-scale networks dynamics. The aggregated and reduced-order models that accurately represent the full-scale network enables optimal coordination and computationally efficient stability assessment in real-Time. However, the heterogenous characteristics of the inverter based DGs due to the different filter model parameters, inverter ratings and control algorithms poses a challenge to derive an accurate aggregated model. This paper proposes to acquire homogenous dynamic characteristics via coherency enforcement control to aggregate the cluster of grid-forming inverters into single equivalent model that can accurately predicts the dynamic of a PEDG cluster. The coherency in the dynamic response of the grid-forming inverters is realized by autonomously identifying and emulating an equivalent inertia. Various case studies are presented in this paper that validates the proposed enforcing coherency control scheme.
AB - This paper presents a control scheme for enforcing coherency in a cluster of grid-forming inverters with heterogenous characteristics. Increasing penetration of distributive generation (DG) drives the conventional grid towards more complex structure and a new concept with heterogenous characteristics known as power electronics dominated grid (PEDG). Thus, it becomes more challenging to optimize and perform various analysis without an accurate model that mimics the large-scale networks dynamics. The aggregated and reduced-order models that accurately represent the full-scale network enables optimal coordination and computationally efficient stability assessment in real-Time. However, the heterogenous characteristics of the inverter based DGs due to the different filter model parameters, inverter ratings and control algorithms poses a challenge to derive an accurate aggregated model. This paper proposes to acquire homogenous dynamic characteristics via coherency enforcement control to aggregate the cluster of grid-forming inverters into single equivalent model that can accurately predicts the dynamic of a PEDG cluster. The coherency in the dynamic response of the grid-forming inverters is realized by autonomously identifying and emulating an equivalent inertia. Various case studies are presented in this paper that validates the proposed enforcing coherency control scheme.
KW - aggregated model
KW - grid-forming inverter
KW - heterogenous DERs
KW - homogeneous dynamic response
KW - PEDG
KW - virtual inertia
UR - https://www.scopus.com/pages/publications/85125007520
U2 - 10.1109/eGRID52793.2021.9662145
DO - 10.1109/eGRID52793.2021.9662145
M3 - Conference contribution
AN - SCOPUS:85125007520
T3 - 2021 6th IEEE Workshop on the Electronic Grid, eGRID 2021
BT - 2021 6th IEEE Workshop on the Electronic Grid, eGRID 2021
PB - Institute of Electrical and Electronics Engineers Inc.
T2 - 6th IEEE Workshop on the Electronic Grid, eGRID 2021
Y2 - 8 November 2021 through 10 November 2021
ER -