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Instrument Response Measurements of Ion Mobility Spectrometers in situ: Maintaining optimal system performance of fielded systems

机译:离子迁移谱仪的仪器响应测量原位:保持现场系统的最佳系统性能

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Ion Mobility Spectroscopy (IMS) is the most widespread detection technique in use by the military for the detection of chemical warfare agents, explosives, arid other threat agents. Moreover, its role in homeland security and force protection has expanded due, in part, to its good sensitivity, low power, lightweight, and reasonable cost. With the increased use of IMS systems as continuous monitors, it becomes necessary to develop tools and methodologies to ensure optimal performance over a wide range of conditions and extended periods of time. Namely, instrument calibration is needed to ensure proper sensitivity and to correct for matrix or environmental effects. We have developed methodologies to deal with the semi-quantitative nature of IMS and allow us to generate response curves that allow a gauge of instrument performance and maintenance requirements. This instrumentation communicates to the IMS systems via a software interface that was developed in-house. The software measures system response, logs information to a database, and generates the response curves. This paper will discuss the instrumentation, software, data collected, and initial results from fielded systems.
机译:离子迁移谱(IMS)是军方用于检测化学战剂,炸药,其他威胁剂的最广泛的检测技术。此外,它在国土安全和部队保护中的作用得到了扩展,部分原因是其良好的敏感性,低功耗,轻便和合理的成本。随着越来越多地将IMS系统用作连续监控器,有必要开发工具和方法论以确保在各种条件下和延长的时间段内实现最佳性能。即,需要进行仪器校准以确保适当的灵敏度并校正基质或环境影响。我们已经开发出方法来处理IMS的半定量性质,并允许我们生成响应曲线,从而可以衡量仪器的性能和维护要求。该仪器通过内部开发的软件接口与IMS系统通信。该软件可以测量系统响应,将信息记录到数据库中,并生成响应曲线。本文将讨论现场系统的仪器,软件,收集的数据和初步结果。

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