Switching Device-Cognizant Sequential Distribution System Restoration
Anmar Arif, Bai Cui, Zhaoyu Wang

TL;DR
This paper introduces a practical optimization framework for sequential distribution system restoration that accounts for various switching devices and repair processes, improving operational efficiency and applicability.
Contribution
It develops a novel multi-phase MILP-based method considering device types, operational limits, and repair dispatch, enhancing restoration strategies in distribution systems.
Findings
Validated on IEEE 123-bus and 8500-bus systems.
Improved computational efficiency with network reduction algorithm.
Effective coordination of switching operations and repair dispatch.
Abstract
This paper presents an optimization framework for sequential reconfiguration using an assortment of switching devices and repair process in distribution system restoration. Compared to existing studies, this paper considers types, capabilities and operational limits of different switching devices, making it applicable in practice. We develop a novel multi-phase method to find the optimal sequential operation of various switching devices and repair faulted areas. We consider circuit breakers, reclosers, sectionalizers, load breaker switches, and fuses. The switching operation problem is decomposed into two mixed-integer linear programming (MILP) subproblems. The first subproblem determines the optimal network topology and estimates the number of steps to reach that topology, while the second subproblem generates a sequence of switching operations to coordinate the switches. For repairing…
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Taxonomy
MethodsRepair
