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Advanced ultrasonic measurement methodology for non-invasive interrogation and identification of fluids in sealed containers

机译:用于密封容器中的非侵入性询问和液体的高级超声测量方法

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Government agencies and homeland security related organizations have identified the need to develop and establish a wide range of unprecedented capabilities for providing scientific and technical forensic services to investigations involving hazardous chemical, biological, and radiological materials, including extremely dangerous chemical and biological warfare agents. Pacific Northwest National Laboratory (PNNL) has developed a prototype portable, hand-held, hazardous materials acoustic inspection prototype that provides noninvasive container interrogation and material identification capabilities using nondestructive ultrasonic velocity and attenuation measurements. Due to the wide variety of fluids as well as container sizes and materials encountered in various law enforcement inspection activities, the need for high measurement sensitivity and advanced ultrasonic measurement techniques were identified. The prototype was developed using a versatile electronics platform, advanced ultrasonic wave propagation methods, and advanced signal processing techniques. This paper primarily focuses on the ultrasonic measurement methods and signal processing techniques incorporated into the prototype. High bandwidth ultrasonic transducers combined with an advanced pulse compression technique allowed researchers to 1) obtain high signal-to-noise ratios and 2) obtain accurate and consistent time-of-flight (TOF) measurements through a variety of highly attenuative containers and fluid media. Results of work conducted in the laboratory have demonstrated that the prototype experimental measurement technique also provided information regarding container properties, which will be utilized in future container-independent measurements of hidden liquids.
机译:政府机构和国土安全相关组织确定了需要制定和建立广泛的前所未有的能力,以便为涉及危险化学品,生物和放射材料的调查提供科学和技术法医服务,包括极其危险的化学和生物战争。太平洋西北国家实验室(PNNL)开发了一种原型便携式,手持式危险材料声学检测原型,可使用非破坏性超声波速度和衰减测量提供非侵入式集装箱询问和材料识别能力。由于各种流体以及各种执法检验活动中遇到的集装箱尺寸和材料,鉴定了对高测量灵敏度和高级超声测量技术的需求。原型是使用多功能电子平台,先进的超声波传播方法和高级信号处理技术开发的。本文主要集中在超声测量方法上,并结合到原型中的信号处理技术。高带宽超声换能器与先进的脉冲压缩技术相结合,允许研究人员1)获得高信噪比,2)通过各种高度衰减的容器和流体介质获得准确和一致的飞行时间(TOF)测量。在实验室中进行的工作结果表明,原型实验测量技术还提供了关于容器性质的信息,这将用于未来的隐藏液体的容器无关测量。

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