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Displacement Parameter Inversion for a Novel Electromagnetic Underground Displacement Sensor

机译:新型电磁地下位移传感器的位移参数反演

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Underground displacement monitoring is an effective method to explore deep into rock and soil masses for execution of subsurface displacement measurements. It is not only an important means of geological hazards prediction and forecasting, but also a forefront, hot and sophisticated subject in current geological disaster monitoring. In previous research, the authors had designed a novel electromagnetic underground horizontal displacement sensor (called the H-type sensor) by combining basic electromagnetic induction principles with modern sensing techniques and established a mutual voltage measurement theoretical model called the Equation-based Equivalent Loop Approach (EELA). Based on that work, this paper presents an underground displacement inversion approach named “EELA forward modeling-approximate inversion method”. Combining the EELA forward simulation approach with the approximate optimization inversion theory, it can deduce the underground horizontal displacement through parameter inversion of the H-type sensor. Comprehensive and comparative studies have been conducted between the experimentally measured and theoretically inversed values of horizontal displacement under counterpart conditions. The results show when the measured horizontal displacements are in the 0–100 mm range, the horizontal displacement inversion discrepancy is generally tested to be less than 3 mm under varied tilt angles and initial axial distances conditions, which indicates that our proposed parameter inversion method can predict underground horizontal displacement measurements effectively and robustly for the H-type sensor and the technique is applicable for practical geo-engineering applications.
机译:地下位移监测是一种有效的方法,可以对岩石和土壤进行深层探测,以进行地下位移测量。它不仅是地质灾害预测和预报的重要手段,而且是当前地质灾害监测中最前沿,热点和复杂的课题。在先前的研究中,作者通过将基本的电磁感应原理与现代感测技术相结合,设计了一种新型的电磁地下水平位移传感器(称为H型传感器),并建立了一种称为基于方程的等效回路法(参见方程式)的互电压测量理论模型( EELA)。在此基础上,本文提出了一种地下位移反演方法,称为“ EELA正演模拟-近似反演方法”。将EELA正演模拟方法与近似优化反演理论相结合,可以通过H型传感器的参数反演推导地下水平位移。在相应条件下,水平位移的实验测量值和理论值之间进行了全面和比较的研究。结果表明,当测得的水平位移在0–100 mm范围内时,通常在变化的倾角和初始轴向距离条件下测试水平位移的反演误差小于3 mm,这表明我们提出的参数反演方法可以H型传感器可以有效,可靠地预测地下水平位移测量结果,该技术适用于实际的地球工程应用。

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