Abstract
An operation adequacy control task is decoupled stepwise in terms of event sequences, cascading events, non-preventive control, and preventive dispatch. Based on the minimum cost-performance-ratio principle, the searches are performed from the bottom up to provide suitable operation adequacy of the minimum defense costs and remaining risks. Iterations may be needed to obtain a global quasi-optimum result. The convolution value of power shortage with respect to the probability is used for ranking the different sequences; the optimization is conducted for each sequence in the descending order of the convolution value. Inside a sequence, the individual events are dealt with in the chronological order. If there is a lack of (or an excess of) reserve capacity within a certain grade, the objects for reserve capacity dispatch are selected for upgrading (or downgrading) from the lower (or the higher) grade, and the optimal executing time is also decided. In case of insufficient instantaneous reserve capacity, emergency control and/or corrective control will be compulsorily executed to avoid uncontrollable blackouts.
| Translated title of the contribution | A research framework for operation adequacy in smart grid: Part Ⅲ Decoupling and Coordination |
|---|---|
| Original language | Chinese (Simplified) |
| Pages (from-to) | 1-5 |
| Journal | 电力系统自动化 |
| Volume | 38 |
| Issue number | 12 |
| Online published | 30 Apr 2014 |
| DOIs | |
| Publication status | Published - 25 Jun 2014 |
| Externally published | Yes |
Research Keywords
- 充裕控制
- 供需协调
- 备用级别
- 备用优化
- 动态优化
- 风险管理
- 多道防线
- Adequacy control
- Coordination between supply and demand sides
- Reserve grades
- Reserve optimization
- Dynamic optimization
- Risk management
- Multiple-defense-lines
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