Modeling abrupt changes in mine water inflow trends: A CEEMDAN-based multi-model prediction approach

Author:

Yao Dongze,Chen Shi,Dong Shuning,Qin Jiwei

Publisher

Elsevier BV

Reference66 articles.

1. CNN-LSTM: an efficient hybrid deep learning architecture for predicting short-term photovoltaic power production;Agga;Elec. Power Syst. Res.,2022

2. Boosted ANFIS model using augmented marine predator algorithm with mutation operators for wind power forecasting;Al-qaness;Appl. Energy,2022

3. Short term electricity load forecasting using hybrid prophet-LSTM model optimized by BPNN;Bashir;Energy Rep.,2022

4. Remote sensing image classification based on a cross-attention mechanism and graph convolution;Cai;Geosci. Rem. Sens. Lett. IEEE,2022

5. A comparative assessment of SARIMA, LSTM RNN and Fb Prophet models to forecast total and peak monthly energy demand for India;Chaturvedi;Energy Pol.,2022

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