Efficient Identification of Bus Split Events Using Synchrophasor Data
Yuqi Zhou, Hao Zhu

TL;DR
This paper presents a fast, reliable method for detecting bus split events in power grids using synchrophasor data, employing a linear sensitivity approach and mixed-integer programming for real-time application.
Contribution
It introduces a novel modeling and monitoring framework that efficiently identifies bus split events through a concise representation and advanced optimization techniques.
Findings
The method accurately detects bus split events in IEEE test systems.
The approach is computationally efficient for real-time power system monitoring.
Numerical results validate the effectiveness of the proposed algorithm.
Abstract
Accurate grid topology information is of paramount importance for routine power system operations, while the growing availability of synchrophasor data offers the opportunity to identify topology changes in real time. Identification of bus split events, where the substation becomes electrically disconnected, is becoming increasingly important for maintaining the security of power systems. This paper aims to provide an efficient modeling and monitoring framework for bus split events by using a concise bus-branch representation. The linear sensitivity analysis is first performed to quickly evaluate the grid-wide impact of such events. Furthermore, the synchrophasor data enabled identification problem is formulated by matching the changes in bus phase angles (and possibly line flows). To address the resultant bilinear multiplication involving the binary connectivity variables, the…
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Taxonomy
TopicsPower System Optimization and Stability · Optimal Power Flow Distribution · Power System Reliability and Maintenance
