Research on Microseismic Source Location Method Based on Waveform Characteristics Monitored by Nanomaterial Sensor under the Background of Metal Oxide Polluted Environment

Author:

Wang Shuai12ORCID,Hu Zhaoxin1,Lu Shasha1

Affiliation:

1. School of Civil Engineering, Liaoning Technical University, Fuxin, Liaoning 123000, China

2. College of Mining, Liaoning Technical University, Fuxin 123000, China

Abstract

In recent years, the monitoring range of source location technology has developed from being one-dimensional and two-dimensional to being three-dimensional. However, due to the complexity and nonuniformity of the seismic wave propagation medium and the uncertainty of the propagation law, there will be large errors in the source location results. Therefore, the analysis of vibration signal has become the key problem of current research. This paper designs a microseismic monitoring system based on Internet of Things sensors, which can monitor the vibration wave characteristics of vibration signals. In order to test the positioning accuracy of the system, this paper introduces three positioning methods: target positioning method based on time difference, time delay estimation method based on EMD, and source target positioning method based on the characteristic frequency of vibration signal. The purpose of this paper is to find the most accurate method from the three source location methods. Through these three methods, the vibration source generated by a single person walking in situ can be located in the vibration positioning experiment of human walking. The error between the actual position and the measurement source position is compared. The results show that the time delay estimation method based on empirical mode decomposition has the highest positioning accuracy. In addition, in the microseismic experiment, it is proved that the positioning accuracy of EMD using L1 norm statistical criterion is higher than that using L2 norm statistical criterion.

Funder

Youth Nursery Project of the Liaoning Provincial Education Department

Publisher

Hindawi Limited

Subject

Inorganic Chemistry,Organic Chemistry,Biochemistry

Reference14 articles.

1. Accelerating Bayesian microseismic event location with deep learning;A. S. Mancini;Solid Earth,2021

2. The method to model microseismic events during hydrofracture propagation;N. G. Shvarev;Journal of Mining Science,2019

3. Microseismic event estimation based on an efficient wavefield inversion;T. Alkhalifah;IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing,2019

4. Velocity analysis and subsurface source location improvement using moveout-corrected gathers

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