Paper
13 January 2023 Forecasting of PM2.5 concentration time series based on SSA-LSTM model
Yueyi Zhang, Di He, Qingyue Wu
Author Affiliations +
Proceedings Volume 12510, International Conference on Statistics, Data Science, and Computational Intelligence (CSDSCI 2022); 125101I (2023) https://doi.org/10.1117/12.2656939
Event: International Conference on Statistics, Data Science, and Computational Intelligence (CSDSCI 2022), 2022, Qingdao, China
Abstract
Clean air is a basic need for human health and well-being. Forecasting PM2.5 concentrations so that cities can make timely policy responses are of great significance of protecting citizens' respiratory health. This paper proposes a long short-term memory neural network models based on the Sparrow Search Algorithm (SSA-LSTM). The Sparrow Search Algorithm is used to optimize the number of hidden layer nodes, learning rate and number of iterations of the LSTM network to improve the forecasting accuracy of the model. In order to verify the validity of the model, the PM2.5 data onto five large cities including Beijing and Shanghai were used for time series forecasting. Compared with the existing long-short-term memory network model (LSTM), BP neural network models and bilateral long-short-term memory network model (Bilstm), the results show that the forecasting results forecast by this optimization model are the most consistent with the actual PM2.5. The forecasting error is effectively reduced, and the optimization result of the SSA algorithm has a good generalization effect.
© (2023) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Yueyi Zhang, Di He, and Qingyue Wu "Forecasting of PM2.5 concentration time series based on SSA-LSTM model", Proc. SPIE 12510, International Conference on Statistics, Data Science, and Computational Intelligence (CSDSCI 2022), 125101I (13 January 2023); https://doi.org/10.1117/12.2656939
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KEYWORDS
Data modeling

Evolutionary algorithms

Neural networks

Optimization (mathematics)

Performance modeling

Data hiding

Environmental sensing

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