JOURNAL ARTICLE

Research on Optimal Dispatching Approach on Power System Flexibility

Abstract

The power fluctuation of system is intensified and the flexibility is reduced due to large scale variable renewable energy sources (VRES) are integrated into the grid. This paper firstly summarizes the existing evaluation metrics and optimal dispatching approaches about the flexibility. Secondly, an evaluation metric named system flexibility interval is established and it reflects the range of power fluctuation that system can tolerate. Then, this paper proposes a dispatching approach of improving system flexibility by optimizing the day-ahead dispatch scheme of the units considering that the actual fluctuant power may deviate far from the predictive value. The proposed approach aims to raise the flexibility of system to reduce operational risk. In the example analysis section, the feasibility of the proposed approach is tested well based on the modified IEEE39 system. The result shows that the system is more flexible and the economic cost increases very little when using the dispatching approach proposed in this paper than conventional approach.

Keywords:
Flexibility (engineering) Electric power system Computer science Reliability engineering Grid Renewable energy Metric (unit) Interval (graph theory) Range (aeronautics) Economic dispatch Power grid Power (physics) Mathematical optimization Engineering Operations management Mathematics

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FWCI (Field Weighted Citation Impact)
13
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0.15
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Topics

Electric Power System Optimization
Physical Sciences →  Engineering →  Electrical and Electronic Engineering
Integrated Energy Systems Optimization
Physical Sciences →  Engineering →  Electrical and Electronic Engineering
Optimal Power Flow Distribution
Physical Sciences →  Engineering →  Electrical and Electronic Engineering

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