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Analysis of natural mineral earthquake and blast based on Hilbert-Huang transform (HHT)

机译:基于Hilbert-Huang变换(HHT)的自然矿物地震和爆炸分析

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There are important theoretical and scientific benefits to identify natural mineral earthquake and blast accurately to ensure the safety of mining. In the paper, we studied the wave characteristics of natural mineral earthquake and blast in a coal mine based on the Hilbert-Huang transform (HHT) method. Results show that the dominant frequency of natural mineral earthquake wave is 20 Hz, which is lower than the other frequency bands. The blast wave frequency is relatively complex and its dominant frequency is 140 Hz, which is higher than the other frequency bands. The natural mineral earthquake wave amplitude is 50 mV and the blast signal amplitude reaches up to 250 mV. However, the decay rate of natural mineral earthquake wave is slower than the blast wave. Both of them could be decomposed into 9 intrinsic mode functions (IMFs) by empirical mode decomposition (EMD). c2, c3, c4 and c5 are the main part of the natural mineral earthquake wave; while c2, c3, and c4 are the main part of the blast wave. These IMFs contain most of the signal energy and belong to the advantage part of the original signal. Besides, the instantaneous energy duration of natural mineral earthquake wave is longer, its peak energy arrival time is earlier and decay rate is slower, while the value is lower. The natural mineral earthquake wave Hilbert energy distributes in the sampling points 600-1200, frequency less than 50 Hz, and the energy peak 100 is at 25 Hz. By contrast, the blast wave Hilbert energy is concentrated on the sampling points 600-800, frequency around 50 Hz and 140 Hz, and the energy peak 170 is at 140 Hz. (C) 2016 Elsevier B.V. All rights reserved.
机译:准确识别天然矿产地震和爆炸对确保采矿安全具有重要的理论和科学益处。本文基于希尔伯特-黄变换(HHT)方法研究了煤矿自然矿产地震波和爆炸波特征。结果表明,天然矿物地震波的主频为20 Hz,低于其他频段。爆炸波频率相对复杂,其主频为140 Hz,高于其他频段。天然矿物地震波振幅为50 mV,爆炸信号振幅高达250 mV。但是,天然矿物地震波的衰减速率比爆炸波慢。通过经验模式分解(EMD),它们都可以分解为9个固有模式函数(IMF)。 c2,c3,c4和c5是天然矿物地震波的主要部分;而c2,c3和c4是爆炸波的主要部分。这些IMF包含大部分信号能量,属于原始信号的优势部分。此外,天然矿物地震波的瞬时能量持续时间较长,其峰值能量到达时间较早,衰减速率较慢,而数值较低。天然矿物地震波希尔伯特能量分布在采样点600-1200中,频率小于50 Hz,并且能量峰值100位于25 Hz。相反,爆炸波希尔伯特能量集中在采样点600-800上,频率在50 Hz和140 Hz左右,并且能量峰值170在140 Hz。 (C)2016 Elsevier B.V.保留所有权利。

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