Paper
19 October 2023 Design of quick centralized feeder automation control system
Wenhua Cao, Biao Yu, Ming Xue, Guanhua Shan, Jianan Lu
Author Affiliations +
Proceedings Volume 12709, Fourth International Conference on Artificial Intelligence and Electromechanical Automation (AIEA 2023); 1270969 (2023) https://doi.org/10.1117/12.2684678
Event: Fourth International Conference on Artificial Intelligence and Electromechanical Automation (AIEA 2023), 2023, Nanjing, China
Abstract
Power supply reliability is an important performance index of distribution network, and the traditional relay protection mode is the key role to ensure power supply reliability. However, when faults often occur, the power supply restoration time of the traditional relay protection mode is long, so it is difficult to meet the requirements of distribution network for fast fault recovery. In view of this disadvantage, a quick centralized feeder automation control system is proposed in this paper, which realizes the rapid transmission and processing of information and shortens the fault isolation time and power supply recovery time through the transmission of short data packet format. In addition, the signal based on Beidou timestamp is introduced to locate the fault point quickly and accurately. Finally based on the real time digital simulator (RTDS), a simulation test platform is built to verify the correctness and effectiveness of the quick centralized feeder automation control system.
© (2023) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Wenhua Cao, Biao Yu, Ming Xue, Guanhua Shan, and Jianan Lu "Design of quick centralized feeder automation control system", Proc. SPIE 12709, Fourth International Conference on Artificial Intelligence and Electromechanical Automation (AIEA 2023), 1270969 (19 October 2023); https://doi.org/10.1117/12.2684678
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KEYWORDS
Automation

Power supplies

Design and modelling

Circuit switching

Control systems design

Reliability

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