A Submodular Optimization Approach to Stable and Minimally Disruptive Controlled Islanding in Power Systems
Author:
Affiliation:
1. University of Washington,Network Security Lab,Department of Electrical and Computer Engineering,Seattle,WA,98195-2500
2. Worcester Polytechnic Institute,Department of Electrical and Computer Engineering,Worcester,MA,010609-2280
Publisher
IEEE
Link
http://xplorestaging.ieee.org/ielx7/9866948/9867142/09867317.pdf?arnumber=9867317
Reference31 articles.
1. MATPOWER: Steady-State Operations, Planning, and Analysis Tools for Power Systems Research and Education
2. Kron Reduction of Graphs With Applications to Electrical Networks
3. MILP formulation for controlled islanding of power networks
4. A Real-Time Controlled Islanding and Restoration Scheme Based on Estimated States
5. Controlled Islanding Solution for Large-Scale Power Systems
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1. A Submodular Approach to Controlled Islanding for Multi-Agent Network Stability;2024 American Control Conference (ACC);2024-07-10
2. A Submodular Energy Function Approach to Controlled Islanding with Provable Stability;2023 62nd IEEE Conference on Decision and Control (CDC);2023-12-13
3. A Hybrid Submodular Optimization Approach to Controlled Islanding With Post-Disturbance Stability Guarantees;IEEE Transactions on Power Systems;2023
4. A Hybrid Submodular Optimization Approach to Controlled Islanding with Heterogeneous Loads;2022 IEEE International Conference on Communications, Control, and Computing Technologies for Smart Grids (SmartGridComm);2022-10-25
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