Journal of Hydroinformatics (Sep 2023)

Deep learning model on rates of change for multi-step ahead streamflow forecasting

  • Woon Yang Tan,
  • Sai Hin Lai,
  • Kumar Pavitra,
  • Fang Yenn Teo,
  • Ahmed El-Shafie

DOI
https://doi.org/10.2166/hydro.2023.001
Journal volume & issue
Vol. 25, no. 5
pp. 1667 – 1689

Abstract

Read online

Water security and urban flooding have become major sustainability issues. This paper presents a novel method to introduce rates of change as the state-of-the-art approach in artificial intelligence model development for sustainability agenda. Multi-layer perceptron (MLP) and deep learning long short-term memory (LSTM) models were considered for flood forecasting. Historical rainfall data from 2008 to 2021 at 11 telemetry stations were obtained to predict flow at the confluence between Klang River and Ampang River. The initial results of MLP yielded poor performance beneath normal expectations, which was R = 0.4465, MAE = 3.7135, NSE = 0.1994 and RMSE = 8.8556. Meanwhile, the LSTM model generated a 45% improvement in its R-value up to 0.9055. Detailed investigations found that the redundancy of data input that yielded multiple target values had distorted the model performance. Qt was introduced into input parameters to solve this issue, while Qt+0.5 was the target value. A significant improvement in the results was detected with R = 0.9359, MAE = 0.7722, NSE = 0.8756 and RMSE = 3.4911. When the rates of change were employed, an impressive improvement was seen for the plot of actual vs. forecasted flow. Findings showed that the rates of change could reduce forecast errors and were helpful as an additional layer of early flood detection. HIGHLIGHTS A highly accurate flood forecasting system based on deep learning has been developed.; Multi-lead ahead forecasting for streamflow has been investigated.; The novel architecture model has been successfully applied for controlling streamflow in SMART tunnel.; The proposed new model architecture could be applied to forecast river streamflow in different hydrological areas;

Keywords