A Graph Theory Method for Identification of a Minimum Breakpoint Set for Directional Relay Coordination
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Published:2019-11-20
Issue:12
Volume:8
Page:1376
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ISSN:2079-9292
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Container-title:Electronics
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language:en
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Short-container-title:Electronics
Author:
Matthews Ronald C.,Reno Matthew J.,Summers Adam K.
Abstract
The energy grid becomes more complex with increasing penetration of renewable resources, distributed energy storage, distributed generators, and more diverse loads such as electric vehicle charging stations. The presence of distributed energy resources (DERs) requires directional protection due to the added potential for energy to flow in both directions down the line. Additionally, contingency requirements for critical loads within a microgrid may result in looped or meshed systems. Computation speeds of iterative methods required to coordinate loops are improved by starting with a minimum breakpoint set (MBPS) of relays. A breakpoint set (BPS) is a set of breakers such that, when opened, breaks all loops in a mesh grid creating a radial system. A MBPS is a BPS that consists of the minimum possible number of relays required to accomplish this goal. In this paper, a method is proposed in which a minimum spanning tree is computed to indirectly break all loops in the system, and a set difference is used to identify the MBPS. The proposed method is found to minimize the cardinality of the BPS to achieve a MBPS.
Funder
U.S. Department of Energy
Subject
Electrical and Electronic Engineering,Computer Networks and Communications,Hardware and Architecture,Signal Processing,Control and Systems Engineering
Cited by
2 articles.
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1. Optimal Coordination of Distance and Overcurrent Relays with Sparse Placement;2022 North American Power Symposium (NAPS);2022-10-09
2. References;Optimal Coordination of Power Protective Devices with Illustrative Examples;2021-11-28