Temperature Prediction in Chinese Solar Greenhouse Based on Artificial Neural Networks Using Environmental Factors
Author:
Publisher
Springer Nature Switzerland
Link
https://link.springer.com/content/pdf/10.1007/978-3-031-55568-8_24
Reference13 articles.
1. Castañeda-Miranda, A., Castaño, V.M.: Smart frost control in greenhouses by neural networks models. Comput. Electron. Agric. 137, 102–114 (2017)
2. Choi, H., Moon, T., Jung, D.H., Son, J.E.: Prediction of air temperature and relative humidity in greenhouse via a multilayer perceptron using environmental factors. J. Bio-Environ. Control 28(2), 95–103 (2019)
3. Ferreira, P.M., Faria, E., Ruano, A.: Neural network models in greenhouse air temperature prediction. Neurocomputing 43(1–4), 51–75 (2002)
4. Ghasemi, P., Karbasi, M., Nouri, A.Z., Tabrizi, M.S., Azamathulla, H.M.: Application of gaussian process regression to forecast multi-step ahead SPEI drought index. Alex. Eng. J. 60(6), 5375–5392 (2021)
5. Huang, L., Deng, L., Li, A., Gao, R., Zhang, L., Lei, W.: A novel approach for solar greenhouse air temperature and heating load prediction based on Laplace transform. J. Build. Eng. 44, 102682 (2021)
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