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Multiple cathode scanning x-ray source technology for x-ray mine detection techniques: advanced technology research

机译:用于X射线探雷技术的多阴极扫描X射线源技术:先进技术研究

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Abstract: Two mine detection techniques rely on the development of a field-equipped x-ray source. The techniques are the Photon Backscatter Imaging method (based mainly on multiple x-ray backscatter) and the first-scatter differential x-ray method. This paper discusses a new x-ray source technology concept and its application in mine detection for use with these techniques. The concept is based on multiple-cathode technology. The basics of the concept are to use small, fast-switching, grid-controlled, multiple dispenser cathodes that are arranged in a closely-spaced, firing sequence. The unique feature of the technology is the ability to control the operation of a sequence of cathodes, so that each cathode is supplied with 1 ampere of current for a time of 100 microseconds. The basics were demonstrated with three cathodes, operated in sequence. The demonstration included dual-energy voltage switching. 'On' and 'off' switching times of 1 microsecond and 3 microseconds, respectively, have been demonstrated at an anode potential of 105 kilovolts and current of 1 ampere. The technology has the capability to dynamically modulate the voltage of the cathodes by plus/minus 20 kilovolts. The source, utilizing this technology, will be able to scan the width of a vehicle for vehicular land mines. The source is expected to be rugged and affixed to the front of a vehicle. The housing diameter for the scanner will be small, i.e. approximately 20 centimeters. The technology favors the use of modular components that are easily replaceable for simple maintenance. These qualities are all positive considerations for a mine detector for the field. !6
机译:摘要:两种探雷技术依赖于配备现场的X射线源的开发。这些技术是光子背散射成像方法(主要基于多个X射线背散射)和一阶散射微分X射线方法。本文讨论了一种新的X射线源技术概念及其在与这些技术一起使用的探雷中的应用。该概念基于多阴极技术。该概念的基本原理是使用紧凑的,快速切换的,网格控制的,多个分配器阴极,这些阴极以紧密间隔的点火顺序排列。该技术的独特之处在于它能够控制一系列阴极的操作,从而为每个阴极提供1安培的电流,持续时间为100微秒。用三个依次运行的阴极演示了基本原理。演示包括双能电压开关。在105伏的阳极电势和1安培的电流下,已经证明了分别为1微秒和3微秒的“开”和“关”切换时间。该技术具有动态调节阴极电压正负20千伏的能力。信号源利用这项技术将能够扫描车辆宽度的车辆用地雷。光源应坚固耐用并固定在车辆的前部。扫描仪的外壳直径将很小,即大约20厘米。该技术支持使用易于更换,维护简单的模块化组件。这些质量对于该领域的探雷器都是积极的考虑因素。 !6

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