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Wavelet-based enhancements to nuclear quadrupole resonance explosives detectors

机译:基于小波的核四极膜共振爆炸物探测器的增强

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Nuclear Quadrupole Resonance (NQR) is effective for the detecting and identification of certain types of explosives such as RDX, PETN and TNT. In explosive detection, the NQR response of certain 14N nuclei present in the crystalline material is proved. The 14N nuclei possess a nuclear quadrupole moment which in the presence of an electric field gradient produces an energy level splitting which may be excited by radio-frequency magnetic fields. Pulsing on the sample with a radio signal of the appropriate frequency produces a transient NQR response which may then be detected. Since the resonant frequency is dependent upon both the quadrupole moment of the 14N nucleus and the nature of the local electric field gradients, it is very compound specific. Under DARPA sponsorship, the authors are using multiresolution methods to investigate the enhancement of operation of NQR explosives detectors used for mine detection. For this application, NQR processing time must be reduced to less than one second. False alarm response due to acoustic and piezoelectric ringing must be suppressed. Also, as TNT is the most prevalent explosive found in land mines NWR detection of TNT must be made practical despite unfavorable relaxation times. All three issues require improvement in signal-to-noise ratio, and all would benefit from improved feature extraction. This paper reports some of the insights provided by multiresolution methods that can be used to obtain these improvements. It includes results of multiresolution analysis of experimentally observed NQR signatures for RDX response and various false alarm signatures in the absence of explosive compounds.
机译:核四极针谐振(NQR)对于检测和鉴定某些类型的炸药等诸如RDX,PETN和TNT的爆炸物有效。在爆炸性检测中,证明了结晶材料中存在的某些14N细胞核的NQR响应。 14N核具有核四元矩阵,在电场梯度存在下,产生能量水平分裂,其可以通过射频磁场激发。利用适当频率的无线电信号脉冲在样本上产生瞬态NQR响应,然后可以检测。由于谐振频率取决于14N核的四极矩和局部电场梯度的性质,因此是非常化合物特异性的。根据DARPA赞助,作者正在使用多分辨率方法来研究用于矿井检测的NQR爆炸物探测器的操作。对于此应用,NQR处理时间必须减少到小于一秒。必须抑制由于声学和压电振铃引起的误报响应。此外,由于TNT是土地矿山中发现的最普遍爆炸性,但是对于TNT的NWR检测必须实用,尽管不利的放松时间。所有三个问题都需要提高信噪比,并且所有这些都会受益于改进的特征提取。本文报告了可用于获得这些改进的多分辨率方法提供的一些见解。它包括对实验观察到的RDX响应的NQR签名的多分辨率分析的结果,以及在没有爆炸性化合物的情况下的各种误报符号。

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