Abstract
The slip phenomenon without loss of synchronization is discovered in power systems and its microscopic structure is disclosed. Two kinds of dynamic saddle points are distinguished by analyzing the microscopic structure of slip with the coordinate-plane-projection (CPP) method. One is the saddle-type structure where the projection point is located either in the up part or the down part of the phase plane, which is divided by both stable and unstable manifolds. The other is the focus-type structure with a time-varying equilibrium point. Although slips occur in both cases, only the slip with saddle-type structure may cause the loss of synchronization.
| Translated title of the contribution | Slip phenomenon without loss of synchronization |
|---|---|
| Original language | Chinese (Simplified) |
| Pages (from-to) | 6-9 |
| Journal | 电力系统自动化 |
| Volume | 27 |
| Issue number | 24 |
| Publication status | Published - 25 Dec 2003 |
Research Keywords
- 电力系统稳定分析
- 全局分岔
- 结构稳定性
- 微观结构
- 坐标平面投影法
- Stability analysis of power systems
- Global bifurcation
- Structural stability
- Microscopic structure
- Coordinate-plane-projection (CPP) method
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