16
L. Dong
15. J.C. Chen, R.E. Hudson, K. Yao, Maximum-likelihood source localization and unknown sensor
location estimation for wideband signals in the near-field. IEEE Trans. Signal Process 50(8),
1843–1854 (2002)
16. M. Ge, H.R. Hardy, H. Wang, J. Wang, Development of a simple mechanical impact system as
a non-explosive seismic source. Geotech. Geol. Eng. 29(1), 137–142 (2011)
17. P.E. Hart, N.J. Nilsson, B. Raphael, A formal basis for the heuristic determination of minimum
cost paths, IEEE Trans. Sys. Sci. Cybern. 4(2), 100–107 (1968)
18. P.E. Hart, N.J. Nilsson, B. Raphael, Correction to a formal basis for the heuristic determination
of minimum cost paths. ACM SIGART Bulletin 37, 28–29 (1972)
19. L. J. Dong, D. Y. Sun, X. B. Li, J. Ma, G. H. Chen, C. X. Zhang, A statistical method to identify
blasts and microseismic events and its engineering application. Chinese J. Rock Mech. Eng.
35(7), 1423–1433 (2016)
20. G.Y. Zhao, J. Ma, L.J. Dong, X.B. Li, G.H. Chen, C.X. Zhang, Classification of mine blasts
and microseismic events using starting-up features in seismograms. Trans. Nonferrous Metals
Soc China 25(10), 3410–3420 (2015)
21. L.J. Dong, J. Wesseloo, Y. Potvin, X.B. Li, Discrimination of mine seismic events and blasts
using the fisher classifier, Naive Bayesian Classifier and Logistic Regression. Rock Mech. Rock
Eng. 49(1), 183–211 (2016)
22. J. Ma, L.J. Dong, G.Y. Zhao, X.B. Li, Discrimination of seismic sources in an underground
mine using full waveform inversion. Int. J. Rock Mech. Min. Sci. 106, 213–222 (2018)
23. H. S. Hasegawa, R. J. Wetmiller, D. J. Gendzwill, Induced seismicity in mines in Canada—an
overview. Pure Appl Geophys 129(3), 423–453 (1989)
24. S.R. Ford, D.S. Dreger, W.R. Walter, Source characterization of the 6 August 2007 Crandall
Canyon Mine seismic event in central Utah. Seismol. Res. Lett. 79(5), 637–644 (2008)
25. S. Cesca, A. Rohr, T. Dahm, Discrimination of induced seismicity by full moment tensor
inversion and decomposition. J. Seismology17(1), 147–163 2013.
26. M.U. Jost, R.B. Herrmann, A student’s guide to and review of moment tensors. Seismol. Res.
Lett. 60(2), 37–57 (1989)
27. L. J. Dong, D. Y. Sun, W. W. Shu, X. B. Li, L. Y. Zhang, Statistical precursor of induced
seismicity using temporal and spatial characteristics of seismic sequence in mines, in World
Conference on Acoustic Emission (2017), pp. 409–420
28. J. Ma, L.J. Dong, G.Y. Zhao, X.B. Li, Qualitative method and case study for ground vibration of
tunnels induced by fault-slip in underground mine. Rock Mech. Rock Eng. 52(6), 1887–1901
(2018)
29. Z. Wang, X. Li, X. Shang, L. Dong, D. Liu, Y. Zhou, VFOM-based source location and local
magnitude calibration for micro-seismic events in mine. Chin J Geotech Eng 39(8), 1408–1415
(2017)
30. L.J. Dong, D.Y. Sun, X.B. Li, J. Ma, L.Y. Zhang, X.J. Tong, Interval non-probabilistic reliability
of surrounding jointed rockmass considering microseismic loads in mining tunnels. Tunn.
Undergr. Space Technol. 81, 326–335 (2018)
31. H.E. Hurst, Long-term storage of reservoirs: an experimental study. J Royal Stat. Soc. Series
a (General) 129(4), 591–593 (1966)
32. M. Gilmore, C.X. Yu, T.L. Rhodes, W.A. Peebles, Investigation of rescaled range analysis,
the Hurst exponent, and long-time correlations in plasma turbulence. Phys. Plasmas 9(4),
1312–1317 (2002)
33. C.G. Bufe, D.J. Varnes, Predictive modeling of the seismic cycle of the Greater San Francisco
Bay Region. J. Geophys. Res. Solid Earth 98(B6), 9871–9883 (1993)
34. D.J. Brehm, L.W. Braile, Intermediate-term earthquake prediction using the modified time-to
failure method in Southern California. Bull. Seismol. Soc. Am. 89(1), 275–293 (1999)
35. Y. Benzion, V. Lyakhovsky, Accelerated seismic release and related aspects of seismicity
patterns on earthquake faults. Earthquake Processes: Physical Modelling, Numerical Simulation and Data Analysis Part II. Birkhäuser, Basel 159(10), 2385–2412 (2002)
36. L.J. Dong, J.H. Wang, J. Ma, Response and support suggestions of surrounding rock of underground cavern under different microseismic source mechanism. Hazard Control in Tunnelling
and Underground Engineering 1(3), 68–76 (2019)
L. Dong
15. J.C. Chen, R.E. Hudson, K. Yao, Maximum-likelihood source localization and unknown sensor
location estimation for wideband signals in the near-field. IEEE Trans. Signal Process 50(8),
1843–1854 (2002)
16. M. Ge, H.R. Hardy, H. Wang, J. Wang, Development of a simple mechanical impact system as
a non-explosive seismic source. Geotech. Geol. Eng. 29(1), 137–142 (2011)
17. P.E. Hart, N.J. Nilsson, B. Raphael, A formal basis for the heuristic determination of minimum
cost paths, IEEE Trans. Sys. Sci. Cybern. 4(2), 100–107 (1968)
18. P.E. Hart, N.J. Nilsson, B. Raphael, Correction to a formal basis for the heuristic determination
of minimum cost paths. ACM SIGART Bulletin 37, 28–29 (1972)
19. L. J. Dong, D. Y. Sun, X. B. Li, J. Ma, G. H. Chen, C. X. Zhang, A statistical method to identify
blasts and microseismic events and its engineering application. Chinese J. Rock Mech. Eng.
35(7), 1423–1433 (2016)
20. G.Y. Zhao, J. Ma, L.J. Dong, X.B. Li, G.H. Chen, C.X. Zhang, Classification of mine blasts
and microseismic events using starting-up features in seismograms. Trans. Nonferrous Metals
Soc China 25(10), 3410–3420 (2015)
21. L.J. Dong, J. Wesseloo, Y. Potvin, X.B. Li, Discrimination of mine seismic events and blasts
using the fisher classifier, Naive Bayesian Classifier and Logistic Regression. Rock Mech. Rock
Eng. 49(1), 183–211 (2016)
22. J. Ma, L.J. Dong, G.Y. Zhao, X.B. Li, Discrimination of seismic sources in an underground
mine using full waveform inversion. Int. J. Rock Mech. Min. Sci. 106, 213–222 (2018)
23. H. S. Hasegawa, R. J. Wetmiller, D. J. Gendzwill, Induced seismicity in mines in Canada—an
overview. Pure Appl Geophys 129(3), 423–453 (1989)
24. S.R. Ford, D.S. Dreger, W.R. Walter, Source characterization of the 6 August 2007 Crandall
Canyon Mine seismic event in central Utah. Seismol. Res. Lett. 79(5), 637–644 (2008)
25. S. Cesca, A. Rohr, T. Dahm, Discrimination of induced seismicity by full moment tensor
inversion and decomposition. J. Seismology17(1), 147–163 2013.
26. M.U. Jost, R.B. Herrmann, A student’s guide to and review of moment tensors. Seismol. Res.
Lett. 60(2), 37–57 (1989)
27. L. J. Dong, D. Y. Sun, W. W. Shu, X. B. Li, L. Y. Zhang, Statistical precursor of induced
seismicity using temporal and spatial characteristics of seismic sequence in mines, in World
Conference on Acoustic Emission (2017), pp. 409–420
28. J. Ma, L.J. Dong, G.Y. Zhao, X.B. Li, Qualitative method and case study for ground vibration of
tunnels induced by fault-slip in underground mine. Rock Mech. Rock Eng. 52(6), 1887–1901
(2018)
29. Z. Wang, X. Li, X. Shang, L. Dong, D. Liu, Y. Zhou, VFOM-based source location and local
magnitude calibration for micro-seismic events in mine. Chin J Geotech Eng 39(8), 1408–1415
(2017)
30. L.J. Dong, D.Y. Sun, X.B. Li, J. Ma, L.Y. Zhang, X.J. Tong, Interval non-probabilistic reliability
of surrounding jointed rockmass considering microseismic loads in mining tunnels. Tunn.
Undergr. Space Technol. 81, 326–335 (2018)
31. H.E. Hurst, Long-term storage of reservoirs: an experimental study. J Royal Stat. Soc. Series
a (General) 129(4), 591–593 (1966)
32. M. Gilmore, C.X. Yu, T.L. Rhodes, W.A. Peebles, Investigation of rescaled range analysis,
the Hurst exponent, and long-time correlations in plasma turbulence. Phys. Plasmas 9(4),
1312–1317 (2002)
33. C.G. Bufe, D.J. Varnes, Predictive modeling of the seismic cycle of the Greater San Francisco
Bay Region. J. Geophys. Res. Solid Earth 98(B6), 9871–9883 (1993)
34. D.J. Brehm, L.W. Braile, Intermediate-term earthquake prediction using the modified time-to
failure method in Southern California. Bull. Seismol. Soc. Am. 89(1), 275–293 (1999)
35. Y. Benzion, V. Lyakhovsky, Accelerated seismic release and related aspects of seismicity
patterns on earthquake faults. Earthquake Processes: Physical Modelling, Numerical Simulation and Data Analysis Part II. Birkhäuser, Basel 159(10), 2385–2412 (2002)
36. L.J. Dong, J.H. Wang, J. Ma, Response and support suggestions of surrounding rock of underground cavern under different microseismic source mechanism. Hazard Control in Tunnelling
and Underground Engineering 1(3), 68–76 (2019)
