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Theoretical and experimental analysis of an equivalent circuit model for the investigation of shallow landmines with acoustic methods

机译:声学方法对浅层地雷调查等效电路模型的理论与实验分析

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Acoustic methods have been recently investigated for the detection of shallow landmines [1], Some plastic landmines have a flexible case which can made to vibrate by an airborne excitation like a loudspeaker. The soil-mine system shows a resonant behavior which is used as a signature to discriminate from other rigid objects, The mechanical resonance can be detected at the soil surface by a remote sensing systems like a laser interferometer. An equivalent physical model of the mine-soil system has been investigated having the known physical characteristics of mine simulants. The authors designed and built a test-object with known mechanical characteristics (mass, elasticity, damping factor). The model has been characterized in laboratory and the results compared with the classic mass-spring loss oscillator described by Voigt. The vibrations at the soil surface have been measured in various positions with a micro machined accelerometer. The results of the simulations for the acceleration of the soil-mine system agree well with the experiment. The calibrated mine model is useful to investigate the variation of the resonance frequency for various buried depths and to compare the results for different soils in different environmental conditions.
机译:最近已经研究了声学方法用于检测浅层地雷[1],一些塑料地区具有柔性壳体,可以通过扬声器等空气激发振动。土壤矿井系统示出了用作与其他刚性物体区分的签名的谐振行为,可以通过像激光干涉仪的遥感系统在土壤表面处检测机械谐振。已经研究了矿井 - 土壤系统的等效物理模型,具有矿井模拟剂的已知物理特征。作者设计并构建了一种具有已知的机械特性(质量,弹性,阻尼因子)的测试对象。与Voigt描述的经典质量弹簧损耗振荡器相比,该模型的特征在于实验室和结果。土壤表面的振动已经在具有微机械加速度计的各种位置中测量。对土壤矿井系统加速度的模拟结果与实验一致。校准的矿井模型可用于研究各种埋地深度的共振频率的变化,并比较不同的环境条件下不同土壤的结果。

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