Fault Diagnosis of Nuclear Power Plant Based on Sparrow Search Algorithm Optimized CNN-LSTM Neural Network
Диагностика неисправностей атомных электростанций на основе нейронной сети CNN–LSTM, оптимизированной алгоритмом поиска воробьёв
2023-03-22
SCID: 54.1/fqftwd8k
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CNN-LSTM neural networkPCTRANSparrow Search Algorithmaccident classificationnuclear power plant fault diagnosis
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Abstract (AI)
Nuclear power is a type of clean and green energy; however, there is a risk of radioactive material leakage when accidents occur. When radioactive material leaks from nuclear power plants, it has a great impact on the environment and personnel safety. In order to enhance the safety of nuclear power plants and support the operator’s decisions under accidental circumstances, this paper proposes a fault diagnosis method for nuclear power plants based on the sparrow search algorithm (SSA) optimized by the CNN-LSTM network. Firstly, the convolutional neural network (CNN) was used to extract features from the data before they were then combined with the long short-term memory (LSTM) neural network to process time series data and form a CNN-LSTM model. Some of the parameters in the LSTM neural network need to be manually tuned based on experience, and the settings of these parameters have a great impact on the overall model results. Therefore, this paper selected the sparrow search algorithm with a strong search capability and fast convergence to automatically search for the hand-tuned parameters in the CNN-LSTM model, and finally obtain the SSA-CNN-LSTM model. This model can classify the types of accidents that occur in nuclear power plants to reduce the nuclear safety hazards caused by human error. The experimental data are from a personal computer transient analyzer (PCTRAN). The results show that the classification accuracy of the SSA-CNN-LSTM model for the nuclear power plant fault classification problem is as high as 98.24%, which is 4.80% and 3.14% higher compared with the LSTM neural network and CNN-LSTM model, respectively. The superiority of the sparrow search algorithm for optimizing model parameters and the feasibility and accuracy of the SSA-CNN-LSTM model for nuclear power plant fault diagnosis were verified.
Key Findings
1
A CNN-LSTM architecture combines convolutional feature extraction with LSTM-based processing of nuclear power plant transient time-series data.
2
SSA-CNN-LSTM improved classification accuracy by 4.80% over LSTM and 3.14% over the unoptimized CNN-LSTM model.
3
The results support the feasibility of SSA-based parameter optimization for accurate nuclear power plant fault diagnosis and operator decision support.
4
The sparrow search algorithm automatically optimizes manually tuned CNN-LSTM parameters, producing the SSA-CNN-LSTM fault diagnosis model.
5
Using PCTRAN-generated experimental data, SSA-CNN-LSTM achieved 98.24% accuracy for classifying nuclear power plant accident types.
Research Object
Nuclear power plant accidents and faults represented by PCTRAN transient data
Research Subject
Accident-type classification and fault-diagnosis accuracy for supporting operator decisions and reducing human-error-related nuclear safety hazards
Publication Details
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2023-03-22
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