基于自适应VMD和改进功率谱估计的球磨机负荷特征提取* .txt
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中图分类号: TP274TH86文献标识码: A国家标准学科分类代码: 51040 .txt

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*基金项目:国家自然科学基金(51777061)、国家重点实验室开放基金研究项目(BGRIMMKZSKL201702)、长沙市重点研发计划(kq1901029)项目资助 .txt


Feature extraction method of ball mill load based on the adaptive variational mode decomposition and the improved power spectrum analysis .txt
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    摘要:

    摘要:磨矿过程中的球磨机运行实时工况复杂,球磨机内部负荷状态难以准确获取。提出以原始筒体振动信号与本征模态函数的能量差作为自适应变分模态分解(VMD)层数的评价参数,构建新型自相关函数,引入RifeVincent自卷积窗结合能量重心法对本征模态函数进行处理,据此提出一种基于自适应VMD和改进功率谱估计的球磨机负荷特征提取方法,并开发基于LabVIEW的球磨机负荷识别系统。该方法能自适应地确定本征模态函数分解层数,提高算法的抗模态混叠、虚假分量能力,从而提高球磨机负荷检测的准确性。实测结果表明,所提方法可有效提取磨矿过程中球磨机内部负荷特征,实现球磨机负荷状态的准确识别,为磨矿优化控制和效率提高提供准确、可靠的依据。 .txt

    Abstract:

    Abstract:The realtime working conditions of the ball mill during the grinding process are complicated. It is difficult to accurately obtain the internal load status of the ball mill. In this study, the energy difference between the original cylinder vibration signal and the intrinsic mode function is utilized as the evaluation parameter of the adaptive variational mode decomposition (VMD) layer number. In this way, a new autocorrelation function is formulated. The intrinsic mode function is processed by introducing the RifeVincent selfconvolution window and the energy centrobaric method. A feature extraction method for ball mill load based on the adaptive VMD and the improved power spectrum estimation is proposed. The ball mill load identification system based on LabVIEW is developed. The number of layers of intrinsic mode function can be adaptively determined. The algorithm's abilities to resist modal aliasing and false components are enhanced. The accuracy of ball mill load detection is improved. Measurement results show that internal load features of ball mill during grinding process are effectively extracted, and the mill load status is accurately identified. This method provides accurate and reliable basis for the optimization control and efficiency improvement of the grinding. .txt

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卿宗胜,高云鹏,吴聪,杨佳伟,王庆凯 . txt.基于自适应VMD和改进功率谱估计的球磨机负荷特征提取* . txt[J].仪器仪表学报,2020,41(5):234-241

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  • 在线发布日期: 2022-03-01
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