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基于CEEMDAN-交叉小波变换的爆破延时识别 被引量:1
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作者 宋青波 柏皓博 +2 位作者 王海龙 赵岩 张奇 《工程爆破》 CSCD 北大核心 2023年第2期10-16,24,共8页
为更加准确识别延时爆破实际的延时时间,引入一种基于CEEMDAN-交叉小波变换的识别方法。首先,通过CEEMDAN方法对爆破信号进行分解,并基于交叉小波变换识别选择振动信号优势分量;然后,将优势分量进行重构,利用希尔伯特变换求取信号幅值;... 为更加准确识别延时爆破实际的延时时间,引入一种基于CEEMDAN-交叉小波变换的识别方法。首先,通过CEEMDAN方法对爆破信号进行分解,并基于交叉小波变换识别选择振动信号优势分量;然后,将优势分量进行重构,利用希尔伯特变换求取信号幅值;最后,通过幅值包络图对延时爆破实际延时进行识别。计算结果表明,引入的方法有效地消除了爆破振动信号中的干扰项,可以更加准确的识别延时爆破实际时间,提高准确度。 展开更多
关键词 延时爆破 CEEMDAN 交叉小波变换 延时时间识别
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Application of Hilbert-Huang transform based delay time identification in optimization of short millisecond blasting 被引量:5
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作者 史秀志 邱贤阳 +3 位作者 周健 陈新 范玉乾 卢二伟 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2016年第7期1965-1974,共10页
The accurate identification of delay time in millisecond blasting plays an important role in the optimization of blasting design and reduction of vibration effect. Through a case study of a surge shaft blasting projec... The accurate identification of delay time in millisecond blasting plays an important role in the optimization of blasting design and reduction of vibration effect. Through a case study of a surge shaft blasting project, the capability of the EMD (empirical mode decomposition) method in identifying the delay time of short millisecond blasting with precise initiation was compared with the instantaneous energy method based on Hilbert-Huang transform (HHT). The recognition rate of the EMD method was more than 80%, while the instantaneous energy method was less than 25%. By analyzing the instantaneous energy of single-hole blasting signal, it was found that the instantaneous energy method was adaptable to millisecond blasting with delay time longer than half of the energy peak period. The EMD method was used to identify delay time of millisecond blasting in Zijinshan open-pit mine. According to the identification results, the blasting parameters were optimized for controlling the blast-induced vibration and reducing the large block ratio. The field data showed that the velocity peak of ground vibration was reduced by more than 30%under almost the same maximum charge per delay by the optimization of delay time and detonating detonators. Combining with slag-remaining blasting and burden optimization of the first row, the large block ratio was reduced to less than 3%. The research results proved that the identification method based on HHT was feasible to optimize the blasting design. The identification method is also of certain reference value for design optimization of other similar blasting projects. 展开更多
关键词 delay time identification short millisecond blasting precise initiation vibration reduction
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