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一种新的k-means聚类雷达信号分选算法 被引量:18
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作者 张冉 夏厚培 《现代防御技术》 北大核心 2015年第6期136-141,共6页
针对传统k-means聚类算法在雷达信号分选中应用存在的不足,提出了一种基于数据场和灰关联分析的k-means聚类雷达信号分选算法。该算法首先根据数据场理论计算所有数据样本的势值,寻找局域势值最大值,选取距最大值最近的样本数据作为初... 针对传统k-means聚类算法在雷达信号分选中应用存在的不足,提出了一种基于数据场和灰关联分析的k-means聚类雷达信号分选算法。该算法首先根据数据场理论计算所有数据样本的势值,寻找局域势值最大值,选取距最大值最近的样本数据作为初始聚类中心,局域势值最大值个数作为聚类数目;然后用灰关联度代替欧式距离来判断数据样本间相似性。该算法能够自动获取初始聚类中心和聚类数目,对频率捷变雷达具有较好的分选效果。仿真结果验证了算法的可行性。 展开更多
关键词 雷达信号分选 K-MEANS聚类 聚类中心和数目 数据场理论 灰关联分析 频率捷变
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Microseismic source location using the Log-Cosh function and distant sensor-removed P-wave arrival data 被引量:5
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作者 PENG Kang GUO Hong-yang SHANG Xue-yi 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第2期712-725,共14页
Source location is the core foundation of microseismic monitoring.To date,commonly used location methods have usually been based on the ray-tracing travel-time technique,which generally adopts an L1 or L2 norm to esta... Source location is the core foundation of microseismic monitoring.To date,commonly used location methods have usually been based on the ray-tracing travel-time technique,which generally adopts an L1 or L2 norm to establish the location objective function.However,the L1 norm usually achieves low location accuracy,whereas the L2 norm is easily affected by large P-wave arrival-time picking errors.In addition,traditional location methods may be affected by the initial iteration point used to find a local optimum location.Furthermore,the P-wave arrival-time data that have travelled long distances are usually poor in quality.To address these problems,this paper presents a microseismic source location method using the Log-Cosh function and distant sensor-removed P-wave arrival data.Its basic principles are as follows:First,the source location objective function is established using the Log-Cosh function.This function has the stability of the L1 norm and location accuracy of the L2 norm.Then,multiple initial points are generated randomly in the mining area,and the established Log-Cosh location objective function is used to obtain multiple corresponding location results.The average value of the 50 location points with the largest data field potential values is treated as the initial location result.Next,the P-wave travel times from the initial location result to triggered sensors are calculated,and then the P-wave arrival data with travel times exceeding 0.2 s are removed.Finally,the aforementioned location steps are repeated with the denoised P-wave arrival dataset to obtain a high-precision location result.Two synthetic events and eight blasting events from the Yongshaba mine,China,were used to test the proposed method.Regardless of whether the P-wave arrival data with long travel times were eliminated,the location error of the proposed method was smaller than that of the L1/L2 norm and trigger-time-based location method(TT1/TT2 method).Furthermore,after eliminating the Pwave arrival data with long travel distances,the location accuracy of these three location methods increased,indicating that the proposed location method has good application prospects. 展开更多
关键词 seismic source location Log-Cosh function data field theory location stability
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