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10. H. Jin, L. Zhang, W. Liang, Q. Ding, Integrated leakage detection and localization model for
gas pipelines based on the acoustic wave method. J. Loss Prev. Process Ind. 27, 74–88 (2014)
11. C. Xu et al., An Acoustic Emission based Multi-level Approach to Buried Gas Pipeline Leakage
Localization. J. Loss Prev. Process Ind. 44, 397–404 (2016)
12. J. Zhao, F. Sun, H. Wang, Pipeline leak fault feature extraction based on wavelet packet analysis
and application, in International Conference on Electrical and Control Engineering (Yichang,
China, 2011)
13. X. Cui, Y. Yan, Y. Ma, L. Ma, X. Han, Localization of CO2 Leakage from Transportation
Pipelines through Low Frequency Acoustic Emission Detection. Sens. Actuators, a 237, 107–
118 (2016)
14. J. Sun, R. Wang, H.-F. Duan, Multiple-fault Detection in Water Pipelines using Transient-based
Time-Frequency Analysis. Journal of Hydroinformatics. 18(6), 975–989 (2016)
15. X. Yu, W. Liang, L. Zhang, H. Jin, J. Qiu, Dual-Tree Complex Wavelet Transform and SVD
based Acoustic Noise Reduction and Its Application in Leak Detection for Natural Gas Pipeline.
Mechanical Systems and Signal Processing. 72–73, 266–285 (2016)
16. N.E. Huang, Z. Wu, A Review on Hilbert-Huang Transform: Method and Its Applications to
Geophysical Studies. Rev. Geophys. 46(2), 1–23 (2008)
17. N. Kingsbury, Complex Wavelets for Shift Invariant Analysis and Filtering of Signals. Applied
and Computational Harmonic Analysis. 10(3), 234–253 (2001)
18. I.W. Selesnick, R.G. Baraniuk, N. G. Kingsbury, The Dual-tree Complex Wavelet Transform,
in IEEE Signal Processing Magazine. IEEE, pp. 123–151 (2005)
19. D.L. Donoho, I.M. Johnstone, Adapting to Unknown Smoothness via Wavelet Shrinkage.
Journal of the American Statistical Association. 90(432), 1200–1224 (1995)
20. D.L. Donoho, I.M. Johnstone, Ideal Spatial Adaptation by Wavelet Shrinkage. Biometrika
81(3), 425–455 (1994)
21. M.A. Golroudbari, Signal denoising based on wavelet transform using a multi-level threshold
function, in 7th International Conference on Application of Information and Communication
Technologies (Baku, Azerbaijan, 2013)
22. G. Shen, X. Qin, R. He, C. Xiu, Theoretical analysis and experimental study of gas pipeline
leak acoustic emission signal transmit speed. in Proceedings of 30th European Conference on
Acoustic Emission Testing & 7th International Conference on Acoustic Emission University of
Granada
23. F. Seco, et al., PCDISP: a tool for the simulation of wave propagation in cylindrical waveguides.
in, 9th International Congress on Sound and Vibration. (2002), pp. 1–7
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York, 2014)
L. L. Ting et al.
9. S. Rashid, S. Qaisar, H. Saeed, E. Felemban, A Method for Distributed Pipeline Burst and
Leakage Detection in Wireless Sensor Networks Using Transform Analysis. Int. J. Distrib.
Sens. Netw. 10(7), 1–14 (2014)
10. H. Jin, L. Zhang, W. Liang, Q. Ding, Integrated leakage detection and localization model for
gas pipelines based on the acoustic wave method. J. Loss Prev. Process Ind. 27, 74–88 (2014)
11. C. Xu et al., An Acoustic Emission based Multi-level Approach to Buried Gas Pipeline Leakage
Localization. J. Loss Prev. Process Ind. 44, 397–404 (2016)
12. J. Zhao, F. Sun, H. Wang, Pipeline leak fault feature extraction based on wavelet packet analysis
and application, in International Conference on Electrical and Control Engineering (Yichang,
China, 2011)
13. X. Cui, Y. Yan, Y. Ma, L. Ma, X. Han, Localization of CO2 Leakage from Transportation
Pipelines through Low Frequency Acoustic Emission Detection. Sens. Actuators, a 237, 107–
118 (2016)
14. J. Sun, R. Wang, H.-F. Duan, Multiple-fault Detection in Water Pipelines using Transient-based
Time-Frequency Analysis. Journal of Hydroinformatics. 18(6), 975–989 (2016)
15. X. Yu, W. Liang, L. Zhang, H. Jin, J. Qiu, Dual-Tree Complex Wavelet Transform and SVD
based Acoustic Noise Reduction and Its Application in Leak Detection for Natural Gas Pipeline.
Mechanical Systems and Signal Processing. 72–73, 266–285 (2016)
16. N.E. Huang, Z. Wu, A Review on Hilbert-Huang Transform: Method and Its Applications to
Geophysical Studies. Rev. Geophys. 46(2), 1–23 (2008)
17. N. Kingsbury, Complex Wavelets for Shift Invariant Analysis and Filtering of Signals. Applied
and Computational Harmonic Analysis. 10(3), 234–253 (2001)
18. I.W. Selesnick, R.G. Baraniuk, N. G. Kingsbury, The Dual-tree Complex Wavelet Transform,
in IEEE Signal Processing Magazine. IEEE, pp. 123–151 (2005)
19. D.L. Donoho, I.M. Johnstone, Adapting to Unknown Smoothness via Wavelet Shrinkage.
Journal of the American Statistical Association. 90(432), 1200–1224 (1995)
20. D.L. Donoho, I.M. Johnstone, Ideal Spatial Adaptation by Wavelet Shrinkage. Biometrika
81(3), 425–455 (1994)
21. M.A. Golroudbari, Signal denoising based on wavelet transform using a multi-level threshold
function, in 7th International Conference on Application of Information and Communication
Technologies (Baku, Azerbaijan, 2013)
22. G. Shen, X. Qin, R. He, C. Xiu, Theoretical analysis and experimental study of gas pipeline
leak acoustic emission signal transmit speed. in Proceedings of 30th European Conference on
Acoustic Emission Testing & 7th International Conference on Acoustic Emission University of
Granada
23. F. Seco, et al., PCDISP: a tool for the simulation of wave propagation in cylindrical waveguides.
in, 9th International Congress on Sound and Vibration. (2002), pp. 1–7
24. J.L. Rose, Ultrasonic Guided Waves in Solid Media. Vol (Cambridge University Press, New
York, 2014)
