Recurrent Neural-Network-Based Maximum Frequency Deviation Prediction Using Probability Power Flow Dynamic Tool

  • Song, Sungyoon
  • Jung, Yoongun
  • Han, Changhee
  • Jung, Seungmin
  • Yoon, Minhan
  • ... Jang, Gilsoo
Citations

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Citations

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초록

This paper proposes a recurrent neural network (RNN)-based maximum frequency deviation forecasting model for power systems with high photovoltaic power (PV) penetration. The proposed RNN model extracts the nonlinear features and invariant structures exhibited in regional PV power output data and time-variable frequency data in case of contingency. To capture the regularity and random characteristics of PV power output, a probability power flow-dynamic tool (PPDT) for uncertain power system modeling has been developed. This tool considers all possible combinations of PV power generation patterns, even those with low probability, such as those caused by passing clouds. The results are verified by a comparison of various artificial intelligence methods using case studies from the South Korean power system. An online dispatch algorithm that considers the frequency constraints for a designated contingency can be implemented by using the proposed model.

키워드

RNNfrequency stabilityprobability power flowrandomnessECONOMIC-DISPATCHSYSTEMMODELGENERATIONPOLICY
제목
Recurrent Neural-Network-Based Maximum Frequency Deviation Prediction Using Probability Power Flow Dynamic Tool
저자
Song, SungyoonJung, YoongunHan, ChangheeJung, SeungminYoon, MinhanJang, Gilsoo
DOI
10.1109/ACCESS.2020.3028707
발행일
2020
유형
Article
저널명
IEEE Access
8
페이지
182054 ~ 182064