A safety check method to maximize the effective reserve by optimizing the power of the tie-line in the power market

Author:

Wu Yang,Wanyan Xingxing,Su Xiangyang,Zou Wentao,Zhu Xinchun,Liu Shuangquan,Shao Qizhuan

Abstract

To ensure the stability of the electricity spot market and the safety of the provincial and regional power systems, a safety check method is proposed to maximize the effective reserve resources in the power system by optimizing the power of each tie-line. This safety check method accurately models the tie-line equipment and the effective reserve resources and is coupled with each constraint of the electricity spot market clearing model to form a safety check algorithm to optimize the power of tie-line power. The model involved in this paper is a linear model, which has a clear implementation method in practical dispatching applications. Through this method, the power configuration scheme of each tie-line to meet the electricity spot market constraints can be obtained, and the safety check results have the executability of the power market. The rationality and feasibility of the safety check algorithm results are verified by simulating the provincial-scale electricity spot market. According to the simulation results, this method can release effective reserve resources and provide more guarantees for the safe operation of the power grid. In addition, this method can save up to 4.9% of the total operation cost of the power system and improve the dispatching economy of the power system. This method is of great significance to ensure the safe operation of the power system and the day-ahead market and real-time market scheduling in the actual power spot system. In addition, this method also has great guiding significance for the analysis of the actual reserve situation of the power market after the event.

Publisher

Frontiers Media SA

Subject

Economics and Econometrics,Energy Engineering and Power Technology,Fuel Technology,Renewable Energy, Sustainability and the Environment

Reference20 articles.

1. Electricity spot market design considering accurate security check;Bao,2022

2. Collaborative security check and correction of regional and provincial power grids under the environment of power market[J];Cai;Proc. CSEE,2022

3. Research on reserve allocation of novel power system facing energy security and the corresponding preservation criterion[J];Chen;Proc. CSU-EPSA,2022

4. Multi-stage robust clearing model considering renewable energy output uncertainty and unit effective reserve calculation in electricity market[J];Duan;Front. Energy Res.,2022

5. Grid optimal dispatching model considering stability constraints of large-scale HVDC infeed[J];Fang;South. Power Syst. Technol.,2022

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