Abstract

With the continuous improvement of the voltage level of the power system, the electromagnetic interference problem of the converter station has become more and more serious. The thyristor control unit (TCU) is the core equipment of the converter valve, and its normal operation is related to the safe and stable operation of the entire converter valve. This paper starts with the actual electromagnetic environment in the converter valve hall, analyzes the failure principle of the TCU under electromagnetic disturbance, and observes the electromagnetic field distribution and sensitive components on the circuit board. Then, a TCU failure early warning method based on pattern matching and support vector regression (SVR) is proposed. The failure trend is deduced by constructing an abnormal information vector, and then the failure predictor is constructed using support vector regression optimized by grid search (GS), genetic algorithm (GA), and particle swarm optimization (PSO). Considering the failure type and warning time comprehensively, an early warning is issued when the failure mode probability increases to the threshold. When new failure modes appear, the failure mode library will continue to expand. The calculation example shows that this method can effectively warn the TCU failure in the electromagnetic environment, and its prediction accuracy can reach 89.2%, which is better than the traditional failure prediction method.

Highlights

  • In recent years, the research and application of high voltage direct current (HVDC) transmission technology has developed rapidly

  • We have considered setting up more voltage probes and current probes before but later found that even so, simulation results and prediction results have not been significantly improved

  • C can adjust the complexity ofvector the model and the optimized by grid search method; GA-SVR, support vector regression optimized by genetic algorithm; empirical risk

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Summary

Introduction

The research and application of high voltage direct current (HVDC) transmission technology has developed rapidly. Energies 2020, 13, 5537 numerous electromagnetic disturbance sources in the converter station, and the TCU is working at a high potential, TCU failure often occurs, resulting in abnormal work of the converter valve [5,6]. Some TCUs used in converter stations are installed in shields for electromagnetic field protection, it is subject to large electromagnetic disturbances because of TCU working on the thyristor valve at a high potential. These electromagnetic disturbances will change irregularly, with multiple amplitude changes and a wide frequency range.

The Electromagnetic Environment Where the TCU Works
Simulation Analysis of TCU in Electromagnetic Field
Simulation
Structural Failure Mode
Failure Mode Matching Algorithm Based on Mode Tree
Support Vector Regression Optimized by Particle Swarm Optimization
Failure Predictor Based on SVR
Failure Prediction and Alarm
Experiment and Analysis
13. Confusion
1–8. The in weeks
Findings
Conclusions

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