TY - JOUR
T1 - Strategic SDN-Based Microgrid Formation for Managing Communication Failures in Distribution System Restoration
AU - Zhong, Jian
AU - Chen, Chen
AU - Bie, Zhaohong
AU - Shahidehpour, Mohammad
N1 - Publisher Copyright:
© 1969-2012 IEEE.
PY - 2025
Y1 - 2025
N2 - Grid modernization has increased the reliance of power networks on cyber networks within distribution systems (DSs), heightening their vulnerability to disasters. Communication network failures significantly impede DS load recovery by diminishing observation and control. Prior research has largely ignored the need for integrated recovery of DS power and cyber networks' centralized control. Indeed, communication network restoration is critical for speedy load recovery through DS automation based microgrid formation. This paper exploits the data routing capabilities of software-defined networking (SDN) to enhance centralized control recovery in DS communication networks, incorporating it into a comprehensive DS restoration model. This model, tailored to the control requirements of load restoration, strategically allocates limited communication resources to re-establish connections between the operation center and terminal devices. Subsequently, DS automation is employed to orchestrate DS microgrid formation for power resupply. Additionally, we introduce a cyclic algorithm designed to optimize the load recovery via a multi-step, cooperative process. The efficacy of the proposed method is demonstrated on IEEE 33-node and IEEE 123-node test feeders.
AB - Grid modernization has increased the reliance of power networks on cyber networks within distribution systems (DSs), heightening their vulnerability to disasters. Communication network failures significantly impede DS load recovery by diminishing observation and control. Prior research has largely ignored the need for integrated recovery of DS power and cyber networks' centralized control. Indeed, communication network restoration is critical for speedy load recovery through DS automation based microgrid formation. This paper exploits the data routing capabilities of software-defined networking (SDN) to enhance centralized control recovery in DS communication networks, incorporating it into a comprehensive DS restoration model. This model, tailored to the control requirements of load restoration, strategically allocates limited communication resources to re-establish connections between the operation center and terminal devices. Subsequently, DS automation is employed to orchestrate DS microgrid formation for power resupply. Additionally, we introduce a cyclic algorithm designed to optimize the load recovery via a multi-step, cooperative process. The efficacy of the proposed method is demonstrated on IEEE 33-node and IEEE 123-node test feeders.
KW - Distribution system restoration
KW - communication recovery
KW - cyber-physical resiliency
KW - microgrid formation
KW - software-defined networking (SDN)
UR - https://www.scopus.com/pages/publications/105003818749
U2 - 10.1109/TPWRS.2024.3497306
DO - 10.1109/TPWRS.2024.3497306
M3 - 文章
AN - SCOPUS:105003818749
SN - 0885-8950
VL - 40
SP - 2506
EP - 2518
JO - IEEE Transactions on Power Systems
JF - IEEE Transactions on Power Systems
IS - 3
ER -