The development of the system for identification of seismic stability and monitoring of origin of anomalous seismic processes

Authors

  • Тельман Аббас Алиев Institute of Control Systems, Azerbaijan National Academy of Sciences 9 B. Vahabzade str., Baku, Azerbaijan Republic, AZ1141, Azerbaijan
  • Али Мамед Аббасов Ministry of Communications and High Technologies of the Azerbaijan Republic 77 Zarifa Aliyeva str., Baku, Azerbaijan Republic, AZ100, Azerbaijan
  • Гамбар Агаверди Гулуев Institute of Control Systems, Azerbaijan National Academy of Sciences 9 B. Vahabzade str., Baku, Azerbaijan Republic, AZ1141, Azerbaijan
  • Фахрад Гейдар Пашаев Institute of Control Systems, Azerbaijan National Academy of Sciences 9 B. Vahabzade str., Baku, Azerbaijan Republic, AZ1141, Azerbaijan
  • Улькар Эльдар Саттарова Institute of Control Systems, Azerbaijan National Academy of Sciences 9 B. Vahabzade str., Baku, Azerbaijan Republic, AZ1141, Azerbaijan

DOI:

https://doi.org/10.15587/1729-4061.2015.51364

Keywords:

seismic-acoustic station, seismic stability, identification, matrix, monitoring, noise, robust estimates

Abstract

To minimize damage from earthquakes, intelligent robust noise technology and a system that allows to combine the monitoring of the latent period of violation of seismic stability with the monitoring of origin of anomalous seismic processes (ASP) is proposed. The system includes a network of seismic-acoustic stations for monitoring the beginning of ASP, located in different areas of the region and the local units for noise monitoring of seismic stability, which are installed in the most vulnerable structures of all controlled construction objects. In order to identify the latent period of the ASP origin and violations of seismic stability of construction objects (SSCO), noise is used as a carrier of diagnostic information. Since June 2010, operation of the network of seismic-acoustic stations and stations for monitoring the violations of SSCO showed that they can be used as a tool to identify the focus areas of expected earthquakes, and to control microchanges in SSCO.

Author Biographies

Тельман Аббас Алиев, Institute of Control Systems, Azerbaijan National Academy of Sciences 9 B. Vahabzade str., Baku, Azerbaijan Republic, AZ1141

Doctor of Engineering, Full Member of the Academy of Sciences

Director of institute

Али Мамед Аббасов, Ministry of Communications and High Technologies of the Azerbaijan Republic 77 Zarifa Aliyeva str., Baku, Azerbaijan Republic, AZ100

Doctor of Engineering, Full Member of the Academy of Sciences

Гамбар Агаверди Гулуев, Institute of Control Systems, Azerbaijan National Academy of Sciences 9 B. Vahabzade str., Baku, Azerbaijan Republic, AZ1141

Doctor of Engineering

Head of the Special constructor Bureau of the Institute of Control Systems

Фахрад Гейдар Пашаев, Institute of Control Systems, Azerbaijan National Academy of Sciences 9 B. Vahabzade str., Baku, Azerbaijan Republic, AZ1141

Doctor of Engineering

Special constructor Bureau of the Institute of Control Systems

Улькар Эльдар Саттарова, Institute of Control Systems, Azerbaijan National Academy of Sciences 9 B. Vahabzade str., Baku, Azerbaijan Republic, AZ1141

PhD

Laboratory of identification of stochastic processes

References

  1. Kollakot, R. (1989). Diagnostika povrezhdenij. Moscow: Mir, 516.
  2. Aliev, T. (2007). Digital noise monitoring of defect origin. London, Springer, 223.
  3. Aliev, T. A. (2003). Robust Technology with Analysis of Interference in Signal Processing. New York, Kluwer Academic/Plenum Publishers, 199.
  4. Aliev, T. A., Guluyev, G. A., Pashayev, F. H., Sadygov, A. B. (2012). Noise monitoring technology for objects in transition to the emergency state. Mechanical Systems and Signal Processing, 27, 755–762. doi: 10.1016/j.ymssp.2011.09.005
  5. Aliev, T. A., Alizada, T. A., Abbasov, A. A. (2015). Method for monitoring the beginning of anomalous seismic process. International Application No PCT/AZ2005/000006, Pub.No WO2006/130933, International Filling Date December 19, 2005.
  6. Aliev, T. A., Abbasov, A. A., Aliev, E. R., Guluev, G. A. (2006). Method for monitoring and forecasting earthquakes. International Application No PCT/AZ2006/00000, Pub.No WO2007/143799, International Filling Date June 16, 2006.
  7. Aliev, T. A., Abbasov, A. M., Aliev, E. R., Guluev, G. A. (2006). Method for monitoring and forecasting earthquakes. Eurapian Asian patent No 011003. International Application No PCT/AZ2006/00000, Pub.No WO2007/143799, International Filling Date June 16, 2006.
  8. Aliev, T. A., Abbasov, A. M., Aliev, E. R., Guliev, G. A. (2007). Digital technology and systems for generating and analyzing information from deep strata of the Earth for the purpose of interference monitoring of the technical state of major structures. Automatic Control and Computer Sciences, 41 (2), 59–67. doi: 10.3103/s0146411607020010
  9. Aliev, T. A., Alizade, A. A., Etirmishli, G. D., Guluev, G. A., Pashaev, F. G., Rzaev, A. G. (2011). Intelligent seismoacoustic system for monitoring the beginning of anomalous seismic process. Seismic Instruments, 47 (1), 15–23. doi: 10.3103/s0747923911010026
  10. Aliev, T. A., Abbasov, A. M. (2005). Digital Technology and the system of interference monitoring of the technical state of contractive objects, and the system of the signaling of abnormal seismic processes. Automatic Control and Computer Sciences, 6, 3–10.
  11. Aliev, T. A., Abbasov, A. M. (2005). Digital technology and the system of interference monitoring of the technical state of constructive objects, and the system of the signalling of abnormal seismic processes. Automatic Control and Computer Sciences, 39 (6), 1–7.
  12. Aliev, T. A., Guliev, Q. A., Rzaev, A. H., Pashaev, F. H., Abbasov, A. M. (2009). Position-binary and spectral indicators of microchanges in the technical states of control objects. Automatic Control and Computer Sciences, 43 (3), 156–165. doi: 10.3103/s0146411609030067
  13. Aliev, T. A., Guluyev, G. A., Pashayev, F. H., Sadygov, A. B. (2012). Noise monitoring technology for objects in transition to the emergency state. Mechanical Systems and Signal Processing, 27, 755–762. doi: 10.1016/j.ymssp.2011.09.005
  14. Ozbulut, O. E., Hurlebaus, S. (2011). Re-centering variable friction device for vibration control of structures subjected to near-field earthquakes. Mechanical Systems and Signal Processing, 25 (8), 2849–2862. doi: 10.1016/j.ymssp.2011.04.017
  15. Lei, Y., Jiang, Y., Xu, Z. (2012). Structural damage detection with limited input and output measurement signals. Mechanical Systems and Signal Processing, 28, 229–243. doi: 10.1016/j.ymssp.2011.07.026
  16. Moon, B., Lee, C.-T., Kang, B.-S., Kim, B. S. (2005). Statistical random response analysis and reliability design of structure system with non-linearity. Mechanical Systems and Signal Processing, 19 (5), 1135–1151. doi: 10.1016/j.ymssp.2004.05.003
  17. Aliev, T. A., Musaeva, N. F., Sattarova, U. E. (2010). Robust technologies for calculating normalized correlation functions. Cybernetics and Systems Analysis, 46 (1), 153–166. doi: 10.1007/s10559-010-9194-1
  18. Aliev, T. A., Musaeva, N. F., Sattarova, U. E. (2011). Technology of calculating robust normalized correlation matrices. Cybernetics and Systems Analysis, 47 (1), 152–165. doi: 10.1007/s10559-011-9298-2

Published

2015-10-23

How to Cite

Алиев, Т. А., Аббасов, А. М., Гулуев, Г. А., Пашаев, Ф. Г., & Саттарова, У. Э. (2015). The development of the system for identification of seismic stability and monitoring of origin of anomalous seismic processes. Eastern-European Journal of Enterprise Technologies, 5(4(77), 19–36. https://doi.org/10.15587/1729-4061.2015.51364

Issue

Section

Mathematics and Cybernetics - applied aspects