Time-frequency analysis of radon and thoron data using continuous wavelet transform

被引:2
作者
Rasheed, Awais [1 ]
Osama, Muhammad [2 ]
Rafique, Muhammad [1 ]
Tareen, Aleem Dad Khan [1 ]
Lone, Kashif Javed [3 ]
Qureshi, Shahzad Ahmad [4 ]
Kearfott, Kimberlee Jane [5 ]
Alam, Aftab [6 ]
Nikolopoulos, Dimitrios [7 ]
机构
[1] Univ Azad Jammu & Kashmir Muzaffarabad, Dept Phys, King Abdullah Campus, Muzaffarabad 13100, Azad Kashmir, Pakistan
[2] Wayne State Univ, Dept Mech Engn, Detroit, MI 48202 USA
[3] Univ Azad Jammu & Kashmir, Tech Era Coll Sci & IT, Muzaffarabad 13100, Azad Kashmir, Pakistan
[4] Pakistan Inst Engn & Appl Sci PIEAS, Dept Comp & Informat Sci, Islamabad, Pakistan
[5] Univ Michigan, Dept Nucl Engn & Radiol Sci, Ann Arbor, MI 48109 USA
[6] Ctr Earthquake Studies, Aftab Alam, Islamabad, Pakistan
[7] Univ West Attica, Dept Ind Design & Prod Engn, Petrou Ralli & Thivon 250, GR-12244 Aigaleo, Greece
关键词
environmental radiations; continuous wavelet transform; radon; thoron; time series; discrete wavelet transform; earthquakes; SOIL-RADON; MULTISCALE ANALYSIS; EARTHQUAKES; LANDSLIDE; PAKISTAN; GAS; GIS;
D O I
10.1088/1402-4896/acf694
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
Continuous exposure to environmental radiation, whether it derives from natural or artificial sources, is thought to pose a substantial risk to public health. In addition to the health effects associated with prolonged exposure to environmental radiations, long-term measurements of these radiations can be used for a variety of beneficial purposes, such as the forecasting of impending earthquakes. Signal processing is an important application used for the purpose of forecasting. Wavelets, being signal-processing tools, are helpful in many applications such as anomaly detection in time series data. However, selection of the best wavelet for a particular application is still a problem that hasn't found a satisfactory solution. In this study, we used continuous wavelet transform (CWT) on environmental radiations, specifically radon time series (RTS) and thoron time series (TTS) data, for the investigation of time-frequency information (TFI). The distribution of energy in the output wavelet decomposition have been investigated by several wavelet families such COIF4, DB4, SYM4 to detect frequency composition of signal and its relation with anomalies hidden in the observed data. Using discrete wavelet transform (DWT), specifically SYM4, DB4, and COIF4, we transformed the radon and thoron time series into a time-dependent sum of frequency components. Using CWT scalograms, the anomalies in the both of time series datasets (TSD) have been identified, and these anomalies have been associated with the seismic events that occurred during the period of the study. The results show that DB4 and SYM4 wavelets are good at identifying anomalies in original radon and thoron TSD, but SYM4 performs better for DWT-decomposed radon and thoron TSD.
引用
收藏
页数:20
相关论文
共 83 条
[1]  
Ali Z, 2009, GEOL SOC SPEC PUBL, V316, P155, DOI 10.1144/SP316.9
[2]  
[Anonymous], 2007, INT RADON PROJECT SU
[3]  
Baig M S., 1987, J. Geol, V5, P1
[4]   Time series analysis of soil radon in Northern Pakistan: Implications for earthquake forecasting [J].
Barkat, Adnan ;
Ali, Aamir ;
Hayat, Umar ;
Crowley, Quentin G. ;
Rehman, Khaista ;
Siddique, Naila ;
Haidar, Takreem ;
Iqbal, Talat .
APPLIED GEOCHEMISTRY, 2018, 97 :197-208
[5]   Regolith thickness modeling using a GIS approach for landslide distribution analysis, NW Himalayas [J].
Basharat, Muhammad ;
Qasim, Masood ;
Shafique, Muhammad ;
Hameed, Nasir ;
Riaz, Muhammad Tayyib ;
Khan, Muhammad Rustam .
JOURNAL OF MOUNTAIN SCIENCE, 2018, 15 (11) :2466-2479
[6]  
Belete G D., 2021, General Overview of Radon Studies in Health Hazard Perspectives, V2021, DOI [10.1155/2021/6659795, DOI 10.1155/2021/6659795]
[7]  
Calkins, 1975, 716C US GEOL SURV, DOI DOI 10.3133/PP716C
[8]  
Chavan M S., 2011, Recent Researches in Communications, Automation, Signal Processing, Nanotechnology, Astronomy and Nuclear Physics
[9]   Long-Term Monitoring and Characterization of Soil Radon Emission in a Seismically Active Area [J].
D'Alessandro, Antonino ;
Scudero, Salvatore ;
Siino, Marianna ;
Alessandro, Giuseppe ;
Mineo, Rosario .
GEOCHEMISTRY GEOPHYSICS GEOSYSTEMS, 2020, 21 (07)
[10]   CO2 and Radon Emissions as Precursors of Seismic Activity [J].
D'Incecco, Simone ;
Petraki, Ermioni ;
Priniotakis, Georgios ;
Papoutsidakis, Michail ;
Yannakopoulos, Panayiotis ;
Nikolopoulos, Dimitrios .
EARTH SYSTEMS AND ENVIRONMENT, 2021, 5 (03) :655-666