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InSAR-Based Model Parameter Estimation of Probability Integral Method and Its Application for Predicting Mining-Induced Horizontal and Vertical Displacements

机译:基于InSAR的概率积分模型参数估计及其在矿山水平位移和垂直位移预测中的应用

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摘要

This paper presents a novel method for estimating the model parameters of the probability integral method (PIM) based on the line-of-sight deformation derived from the interferometric synthetic aperture radar. Then, it applies the settled PIM to forward predict the horizontal and vertical displacements induced by the extraction of a new working panel. The proposed method first constructed the functional relationship between the InSAR-derived LOS deformation and the model parameters of PIM. Subsequently, an improved genetic algorithm (GA), in which gross error elimination was imposed, was proposed, and used to estimate the model parameters of PIM with a large number of LOS deformation measurements. The estimated model parameters and PIM were then employed to forward predict the horizontal and vertical displacements induced by the extraction of a working panel. Simulated experiments show that the rmses of the predicted displacements along the up–down, west–east, and north–south directions are 1.5, 0.9, and 2.5 mm, respectively. Real data experiments over the Qianyingzi coal mining area of China indicate that the predicted displacements are highly consistent with those by field surveys, with rmses of 4.1 and 3 cm for the vertical and horizontal directions, respectively. These imply that the proposed approach can be a very promising tool for predicting the mining-induced displacements and will potentially contribute to the assessing and forecasting of possible geological hazards in the mining area.
机译:本文提出了一种基于干涉合成孔径雷达的视线变形估计概率积分法(PIM)模型参数的新方法。然后,它应用已确定的PIM来向前预测由提取新工作面板引起的水平和垂直位移。提出的方法首先构造了InSAR衍生的LOS变形与PIM模型参数之间的函数关系。随后,提出了一种改进的遗传算法(GA),其中施加了总误差消除,并用于估计具有大量LOS变形测量值的PIM的模型参数。然后,使用估计的模型参数和PIM来向前预测由提取工作面板引起的水平和垂直位移。模拟实验表明,沿上下,西,东和南北方向的预测位移的均方根分别为1.5、0.9和2.5 mm。在中国前营子煤矿区的真实数据实验表明,预测的位移与现场调查的位移高度一致,垂直和水平方向的均方根分别为4.1 cm和3 cm。这意味着所提出的方法可能是预测采矿引起的位移的非常有前途的工具,并且可能有助于评估和预测采矿区可能的地质灾害。

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