DocumentCode :
2193047
Title :
The application of symbolic dynamics in rainstorm prediction
Author :
Du, Yanxia ; Deng, Xiaobo ; Xu, Lisheng ; Ding, Jilie ; Liu, Hailei
Author_Institution :
Atmos. Radiat. & Satellite Remote Sensing Lab., Chengdu Univ. of Inf. TechnPology, Chengdu, China
fYear :
2011
fDate :
9-11 Sept. 2011
Firstpage :
519
Lastpage :
522
Abstract :
Rainstorm is one of the major natural disasters in the world and lead huge losses of national economy and people´s life and property every year. The prediction of rainstorms is very difficult using the current methods because of the atmospheric system´s complexity and non-linearity. In recent years, nonlinear science has developed rapidly and nonlinear time series analysis has been widely used in many scientific and technological fields. Symbolic dynamics is a branch of nonlinear science and have gradually become a tool of time series analysis. In this paper the symbolic dynamics method was introduced in detail, the process including interpolation, de-noising, segmentation, symbolization, coding and statistical analysis. Using symbolic dynamics to explore storm event has some certain significance, the entropy curves of a large number of heavy rain events were analyzed and the entropy reached its minimum before most of the heavy rainfall. So this characteristic can be treated as the symptom the prediction of rainstorms. In this paper 158 global rainstorm events are used to test symbolic dynamics method. The results show that 107 rainstorms events appear obvious symptom and the prediction accuracy reach 67.7%. So it is valuable in monitoring and forecasting heavy rain events.
Keywords :
atmospheric techniques; entropy; interpolation; rain; storms; time series; weather forecasting; atmospheric system complexity analysis; atmospheric system nonlinearity analysis; denoising method; entropy; global rainstorm events; heavy rain event forecasting method; heavy rain event monitoring method; interpolation method; national economy; natural disasters; nonlinear time series analysis; rainstorm prediction method; segmentation method; statistical analysis; symbolic dynamics the method; Entropy; Interpolation; Noise reduction; Nonlinear dynamical systems; Rain; Time series analysis; de-noising; entropy; interpolation; nonlinear time series; rainstorm; segmentation; symbolic dynamics; symbolization;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Electronics, Communications and Control (ICECC), 2011 International Conference on
Conference_Location :
Ningbo
Print_ISBN :
978-1-4577-0320-1
Type :
conf
DOI :
10.1109/ICECC.2011.6067622
Filename :
6067622
Link To Document :
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