Title :
Multiple Input Single Output (MISO) ARX and NARX model of flood prediction system: A comparative study
Author :
Ruslan, F.A. ; Samad, A.M. ; Md Zain, Zainalazlan ; Adnan, R.
Author_Institution :
Fac. of Electr. Eng., Univ. Teknol. MARA, Shah Alam, Malaysia
fDate :
Nov. 29 2013-Dec. 1 2013
Abstract :
Flood is a most dangerous natural disaster that can cause enormous threat to human life and property. Thus, an accurate flood water level prediction is very prominent prior to develop a reliable flood water level prediction. Despite the widespread use of nonlinear model for flood water level prediction, linear model is still a new model among researchers around the world. Therefore, this paper present MISO linear system identification model namely Autoregressive Exogenous Input (ARX). The river branch treated in this study was Kelang river, located at Petaling bridge that originated from three upstream rivers which were Kelang river at Sulaiman bridge, Kelang river at Tun Perak bridge and Gombak river at Jalan Parlimen. The result obtained was not promising enough and there still rooms for improvement. This is due to the dynamics of flood water level itself is characterized as highly nonlinear. Thus, flood water level prediction using nonlinear model, Nonlinear Autoregressive Model with Exogenous Input (NARX) was proposed and results showed significant improvement.
Keywords :
autoregressive processes; disasters; floods; forecasting theory; identification; linear systems; prediction theory; rivers; Gombak river; Jalan Parlimen; Kelang river; MISO ARX model; MISO linear system identification model; NARX model; Petaling bridge; Sulaiman bridge; Tun Perak bridge; autoregressive exogenous input; flood prediction system; flood water level dynamics; flood water level prediction; multiple input single output ARX model; natural disaster; nonlinear autoregressive model; river branch; upstream rivers; Autoregressive processes; Computational modeling; Data models; Floods; Mathematical model; Predictive models; Rivers; Flood Water Level Prediction; MISO ARX; NARX;
Conference_Titel :
Control System, Computing and Engineering (ICCSCE), 2013 IEEE International Conference on
Conference_Location :
Mindeb
Print_ISBN :
978-1-4799-1506-4
DOI :
10.1109/ICCSCE.2013.6719969