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Experimental research of microseismic source localization based on improved simplex optimization algorithm

机译:基于改进单纯形优化算法的微震源定位实验研究

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Microseismic monitoring technology has broad application prospects in large-scale civil engineering safety monitoring fields, such as tunnels. However, due to the lack of a perfect localization method, the microseismic monitoring system has the large localization error at present. To solve this problem, firstly, we preprocess the chaotic microseismic signal, using power spectrum analysis method to extract dominant frequency of microseismic signals and filtering the original signals. We also proposed time-of-arrival localization method based on the combination of the simplex method and the local localization method. First of all, we use the local localization method to determine the initial values of the simplex, and then use the simplex optimization algorithm to locate the microseismic source. Lastly, we test the above methods. Experimental results show that the localization error of this method is less than 0.5m and the relative error is less than 10%.
机译:微震监测技术在隧道等大型土木工程安全监测领域具有广阔的应用前景。但是,由于缺乏完善的定位方法,目前微震监测系统的定位误差较大。为了解决这个问题,首先,对混沌微震信号进行预处理,采用功率谱分析方法提取微震信号的主频,并对原始信号进行滤波。我们还结合单纯形法和局部定位方法提出了到达时间定位方法。首先,我们使用局部定位方法确定单纯形的初始值,然后使用单纯形优化算法来定位微震源。最后,我们测试上述方法。实验结果表明,该方法的定位误差小于0.5m,相对误差小于10%。

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