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A theoretical performance analysis and simulation of time-domain EMI sensor data for land mine detection

机译:地雷检测时域EMI传感器数据的理论性能分析与仿真

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The physical phenomenology of electromagnetic induction (EMI) sensors' is reviewed for application to land mine detection and remediation. The response from time-domain EMI sensors is modeled as an exponential damping as a function of time, characterized by the initial magnitude and decay rate. Currently deployed EMI sensors that are used for the land mine detection process the recorded signal in a variety of ways in order to provide an audio output for the operator to judge whether or not the signal is from a mine. Sensors may sample the decay curve, sum it, or calculate its energy. Based on exponential decay model and the assumption that the sensor response is subject to additive white Gaussian noise, the performance of these, as well as optimal, detectors are derived and compared. Theoretical performance predictions derived using simplifying assumptions are shown to agree closely with simulated performance. It will also be shown that the generalized likelihood ratio test (GLRT) is equivalent to the likelihood ratio test (LRT) for multichannel time-domain EMI sensor data under the additive white Gaussian noise assumption and specific assumptions regarding the statistics of the decay rates of targets and clutter.
机译:对电磁感应(EMI)传感器的物理现象进行了综述,以应用于地雷检测和修复。来自时域EMI传感器的响应被建模为随时间变化的指数阻尼,其特征是初始幅度和衰减率。当前部署的用于地雷检测的EMI传感器以多种方式处理记录的信号,以便为操作员提供音频输出,以判断信号是否来自地雷。传感器可以对衰减曲线进行采样,求和或计算其能量。基于指数衰减模型和假设传感器响应会受到加性高斯白噪声的假设,得出并比较了这些检测器以及最佳检测器的性能。使用简化的假设得出的理论性能预测与模拟性能非常吻合。还将显示,在加性高斯白噪声假设和关于噪声衰减率统计的特定假设下,广义似然比检验(GLRT)等效于多通道时域EMI传感器数据的似然比检验(LRT)。目标和混乱。

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