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Published on: June 25, 2021
A measurement-driven graph learning framework for Wideband oscillation localization in power systems
Zhilin Dong1, Haoqing Xiong1, Jun Yang2
1CHINA EPPEI Smart Energy Co., Ltd., Beijing, China.
This study introduces LCGS-Net, a new framework for pinpointing wideband oscillation sources in power systems. It effectively handles complex oscillations, outperforming existing methods, especially for high-frequency disturbances.
Area of Science:
- Electrical Engineering
- Power Systems Analysis
- Signal Processing
Background:
- Converter-dominated power systems face challenges with wideband oscillations due to their complex, non-stationary nature.
- Conventional localization methods struggle with multi-band oscillations and weak spatial coherence, particularly for medium- and high-frequency components.
Purpose of the Study:
- To develop an advanced method for wideband oscillation source localization in power systems.
- To address the limitations of existing techniques in handling complex oscillation characteristics.
Main Methods:
- A novel spatiotemporal graph learning framework, LCGS-Net (Local-Contrast Global-Smooth Network), is proposed.
- A dual-branch representation disentangles global smooth patterns from local perturbations.
- Hierarchical channel interaction and adaptive fusion strategies enhance feature representation and information balancing.
Main Results:
- LCGS-Net demonstrates superior performance compared to baseline models in simulations on IEEE benchmark systems.
- The framework shows significant improvements in localizing high-frequency oscillation sources.
- Initial validation on the IEEE 39-bus system suggests scalability.
Conclusions:
- LCGS-Net effectively captures the local contrastive spatial characteristics of wideband oscillations.
- The proposed method offers a promising solution for wideband oscillation source localization in complex power systems.
- Further validation on large-scale, realistic grids is recommended.
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