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Methods for Reducing RF Interference for Improved NQR Detection of Landmines

机译:降低RF干扰以改善LANDMINE的改善NQR检测方法

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Nuclear Quadrupole Resonance (NQR) is being researched as a confirmatory sensor for use in mine detection as part of the research carried out by the Defence Science and Technology Laboratory (Dstl) for the UK MOD Applied Research Programme. NQR is a radio frequency (RF) spectroscopy technique used at close range to detect explosives, typically TNT and RDX, found in anti-tank and anti-personnel landmines. Detection is carried out by averaging NQR data until the signal to noise ratio increases enough for the signal to be distinguished from RF noise and interference. Environmental RF noise dominates the received signal because NQR signals are, in comparison, extremely low in magnitude. Therefore, RF interference, which varies depending on the time of day, environment, and frequency of the radiation, directly affects detection times. Methods of reducing RF interference such as antenna design, signal processing and phase cycling are reviewed and discussed. Results are presented from research undertaken to enhance the signal to noise ratio, taken in various environments.
机译:核心四极膜共振(NQR)正在研究作为矿山检测的确认传感器,作为由国防科学和技术实验室(DSTL)为英国Mod应用研究计划进行的研究的一部分。 NQR是近距离使用的射频(RF)光谱技术,以检测爆炸物,通常是TNT和RDX,在反坦克和杀伤人员地雷中发现。通过平均NQR数据来执行检测,直到信号与噪声比增加足够足以与RF噪声和干扰区分开。环境RF噪声主导接收信号,因为NQR信号相比,幅度极低。因此,RF干扰,这取决于辐射的一天,环境和频率的时间,直接影响检测时间。回顾和讨论减少天线设计,信号处理和相循环的RF干扰的方法。结果提出了在各种环境中提高信噪比的研究。

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