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Suitable triggering algorithms for detecting strong ground motions using MEMS accelerometers 被引量:1

Suitable triggering algorithms for detecting strong ground motions using MEMS accelerometers
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摘要 With the recent development of digital Micro Electro Mechanical System (MEMS) sensors, the cost of monitoring and detecting seismic events in real time can be greatly reduced. Ability of MEMS accelerograph to record a seismic event depends upon the efficiency of triggering algorithm, apart from the sensor's sensitivity. There are several classic triggering algorithms developed to detect seismic events, ranging from basic amplitude threshold to more sophisticated pattern recognition. Algorithms based on STA/LTA are reported to be computationally efficient for real time monitoring. In this paper, we analyzed several STA/LTA algorithms to check their efficiency and suitability using data obtained from the Quake Catcher Network (network of MEMS accelerometer stations). We found that most of the STA/LTA algorithms are suitable for use with MEMS accelerometer data to accurately detect seismic events. However, the efficiency of any particular algorithm is found to be dependent on the parameter set used (i.e., window width of STA, LTA and threshold level). With the recent development of digital Micro Electro Mechanical System (MEMS) sensors, the cost of monitoring and detecting seismic events in real time can be greatly reduced. Ability of MEMS accelerograph to record a seismic event depends upon the efficiency of triggering algorithm, apart from the sensor's sensitivity. There are several classic triggering algorithms developed to detect seismic events, ranging from basic amplitude threshold to more sophisticated pattern recognition. Algorithms based on STA/LTA are reported to be computationally efficient for real time monitoring. In this paper, we analyzed several STA/LTA algorithms to check their efficiency and suitability using data obtained from the Quake Catcher Network (network of MEMS accelerometer stations). We found that most of the STA/LTA algorithms are suitable for use with MEMS accelerometer data to accurately detect seismic events. However, the efficiency of any particular algorithm is found to be dependent on the parameter set used (i.e., window width of STA, LTA and threshold level).
出处 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2015年第1期27-35,共9页 地震工程与工程振动(英文刊)
基金 IIT Roorkee under the Faculty Initiation Grant No.100556
关键词 strong ground motion triggering algorithms seismic event detection MEMS accelerometers STA/LTA based algorithms strong ground motion triggering algorithms seismic event detection MEMS accelerometers STA/LTA based algorithms
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  • 1Alandry B, Dumas N, Latorre P (2009), "A Mems-based for Consumer Applications," L, Mailly F and Nouet Multi-sensor Platform Microelectronics and Electronics, Ph.D. Research in PRIME, 320-323.
  • 2Allen R (1978), "Automatic Earthquake Recognition and Timing from Single Traces," Bulletin Seismological Society of America, 68:1521-1532.
  • 3Anderson DP, Cobb J, Korpela E, Lebofsky M and Werthimer D (2002), "SETI@home: An Experiment in Public-Resource Computing," Communications of the ACM, 45: 56-61.
  • 4Botella F, Rosa-Herranz J, Giner JJ, Molina S and Galianamerino JJ (2003), "A Real-time Earthquake Detector with Prefiltering by Wavelets," Computers & Geosciences, 29: 911-919.
  • 5Capon J, Greenfield RL and Lacoss R (1969), "Long- period Signal Processing Results for the Large Aperture Seismic Array," Geophysics Journal, 34: 305-329.
  • 6Chung AI, Neighbors C, Belmonte A, Miller M, Sepulveda HH, Christensen C, Jakka RS, Cochran ES and Lawrence JF (2011), "The Quake-Catcher Network Rapid Aftershock Mobilization Program Following the 2010 M8.8 Maule, Chile Earthquake," Seismological Research Letters, 82(4): 526-532.
  • 7Chung P J, Jost ML and Bohme JF (2001), "Estimation of Seismic-wave Parameters and Signal Detection using Maximum-likelihood Methods," Computers & Geosciences, 27: 147-156.
  • 8Cochran ES, Lawrence JF, Christensen C and Chung A (2009b), "A Novel Strong Motion Seismic Network for Community Participation in Earthquake Monitoring," IEEE Instrumentation and measurement Magazine, 12(6): 8-15.
  • 9Cochran ES, Lawrence JF, Christensen C and Jakka RS (2009a), "The Quake-catcher Network: Citizen Science Expanding Seismic Horizons," Seismological Research Letters, 80(1): 26-30.
  • 10Farine M, Thorburn N and Mougenot D (2004), "General Application of MEMS Sensors for Land Seismic Acquisition--Is It Time?" The Leading Edge, 23: 246-250.

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