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Locating single-point sources from arrival times containing large picking errors (LPEs): the virtual field optimization method (VFOM)

机译:从到达时间大的拾取错误(LPE)定位单点源:虚拟场优化方法(VFOM)

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Microseismic monitoring systems using local location techniques tend to be timely, automatic and stable. One basic requirement of these systems is the automatic picking of arrival times. However, arrival times generated by automated techniques always contain large picking errors (LPEs), which may make the location solution unreliable and cause the integrated system to be unstable. To overcome the LPE issue, we propose the virtual field optimization method (VFOM) for locating single-point sources. In contrast to existing approaches, the VFOM optimizes a continuous and virtually established objective function to search the space for the common intersection of the hyperboloids, which is determined by sensor pairs other than the least residual between the model-calculated and measured arrivals. The results of numerical examples and in-site blasts show that the VFOM can obtain more precise and stable solutions than traditional methods when the input data contain LPEs. Furthermore, we discuss the impact of LPEs on objective functions to determine the LPE-tolerant mechanism, velocity sensitivity and stopping criteria of the VFOM. The proposed method is also capable of locating acoustic sources using passive techniques such as passive sonar detection and acoustic emission.
机译:使用本地定位技术的微地震监测系统往往是及时,自动和稳定的。这些系统的一个基本要求是自动选择到达时间。但是,由自动化技术生成的到达时间始终包含较大的拣选错误(LPE),这可能会使定位解决方案不可靠,并导致集成系统不稳定。为了克服LPE问题,我们提出了一种用于定位单点源的虚拟场优化方法(VFOM)。与现有方法相比,VFOM优化了一个连续且虚拟建立的目标函数,以搜索空间以寻找双曲面的公共交点,该交点是由传感器对确定的,而不是模型计算和测量的到达之间的最小残差。数值算例和现场爆破结果表明,当输入数据包含LPE时,VFOM可以获得比传统方法更精确,更稳定的解决方案。此外,我们讨论了LPE对目标函数的影响,以确定LPE耐受机制,速度敏感性和VFOM的停止标准。所提出的方法还能够使用无源技术(例如无源声纳检测和声发射)来定位声源。

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