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    • 5. 发明申请
    • System and method for terahertz imaging using a single terahertz detector
    • 使用单个太赫兹检测器进行太赫兹成像的系统和方法
    • US20040155193A1
    • 2004-08-12
    • US10454152
    • 2003-06-04
    • Phuc G. TranKenneth H. Shafer
    • G01J005/02
    • G01N21/3581
    • A system and method for THz imaging utilizing a single THz detector that detects an image of a large area and provides good spatial details (high resolution). In one aspect, the system can individually modulate a different pixel of an image. The system could be a series of masks. Each mask may include holes that may be turned on/off with a distinct pattern from all of the other holes. Once the data for each mask has been received, the data for each hole may be extracted according to its modulation pattern. Another modulation system may include a micro-mirror array that deflects the THz signal towards or away from the THz detector.
    • 一种使用单个THz检测器进行太赫兹成像的系统和方法,用于检测大面积的图像并提供良好的空间细节(高分辨率)。 在一个方面,系统可以单独地调制图像的不同像素。 该系统可以是一系列的面具。 每个掩模可以包括可以与来自所有其它孔的不同图案打开/关闭的孔。 一旦接收到每个掩模的数据,可以根据其调制模式提取每个孔的数据。 另一种调制系统可以包括将太赫兹信号偏转或远离太赫兹检测器的微镜阵列。
    • 6. 发明申请
    • Infrared friend or foe identification system
    • 红外朋友或对手识别系统
    • US20040149913A1
    • 2004-08-05
    • US10761700
    • 2004-01-20
    • Arvel Benjamin WitteArthur Karl WilliamsRichard David Fleeter
    • G01J005/02
    • B64D33/04F41H13/00G01N21/72G01S17/74
    • The present invention resides in an infrared identification system for identifying military vehicles as friendly or hostile. The infrared identification system includes a seed introduction system, in each friendly vehicle, that introduces trace quantities of a particular seed formulation into the vehicle's exhaust. An infrared detection system, also in each friendly vehicle, detects the spectrally-discrete thermal emissions of the seed formulation to identify those vehicles having the thermal emissions as friendly. The infrared identification system provides rapid and positive friend or foe identification of land, sea and air vehicles at long ranges without being jammed, intercepted or mimicked.
    • 本发明涉及一种用于将军车识别为友好或敌对的红外识别系统。 红外识别系统包括种子引入系统,在每个友好的车辆中,将痕量的特定种子制剂引入车辆的排气中。 在每个友好的车辆中,红外线检测系统检测种子配方的光谱离散热排放,以识别具有热释放性的车辆。 红外识别系统提供快速,积极的朋友或敌对的远距离识别陆,海,空车辆,不会被卡住,拦截或模仿。
    • 7. 发明申请
    • Non-invasive detection of analytes in a complex matrix
    • 复杂基质中分析物的非侵入性检测
    • US20040135085A1
    • 2004-07-15
    • US10745092
    • 2003-12-23
    • Igor TrofimovStephen A. Lyon
    • G01J005/02
    • A61B5/1455A61B5/14532G01J3/4338G01N21/35
    • A system and method for determining the concentration of analytes of interest in complex matrices is provided. According to one aspect of the present invention, near-infrared analytical radiation is generally directed onto a portion of a specimen containing the analyte of interest. A wavelength of the analytical radiation is scanned over the specimen over a broad range of frequencies and over a short duration of diagnostic time. A spectrum of radiation is transmitted through, reflected from or scattered from the specimen and collected by a detector. The concentration of the analyte of interest in the specimen is determined by the radiation collected by the detector.
    • 提供了一种用于确定复合基质中感兴趣的分析物浓度的系统和方法。 根据本发明的一个方面,近红外分析辐射通常被引导到含有感兴趣分析物的样品的一部分上。 分析辐射的波长在宽范围的频率上和短时间的诊断时间内扫描样本。 辐射光谱透过,从样本反射或散射,并由检测器收集。 样品中感兴趣的分析物的浓度由检测器收集的辐射确定。
    • 8. 发明申请
    • Apparatus for on-line monitoring quality/condition of fluids
    • 用于在线监测流体质量/状况的装置
    • US20040129884A1
    • 2004-07-08
    • US10337594
    • 2003-01-07
    • Frederick P. BoyleWilliam P. TaylorMichelle M. Graf
    • G01N021/00G01J005/02
    • G01N21/3151G01N21/3504G01N21/3577G01N21/552
    • An apparatus for on-line optical monitoring of the quality and/or chemical condition of a fluid; in particular, a hydrocarbon-based fluid used in transportation and industrial applications. The apparatus includes an IR-transparent internal-reflectance-element (IRE) that has at least one essentially flat surface and at least one convex surface, and at least two IR light paths of uniquely determined central-frequency and bandwidth with light from a source entering a flat surface of the IRE, internally reflecting at least once from at least one convex surface of the IRE that can contact a fluid, exiting a flat surface of the IRE, and being received at a detector. The apparatus also includes electronics to power the source and receive output from the detector of each light path. The apparatus can be controlled to independently monitor the IR light reflected within the IRE at the uniquely determined frequency of each path, and to communicate information relevant to the IR light detected.
    • 一种在线光学监测流体质量和/或化学条件的装置; 特别是用于运输和工业应用中的基于烃的流体。 该装置包括具有至少一个基本上平坦的表面和至少一个凸表面的IR透明内部反射元件(IRE)和至少两个具有唯一确定的中心频率和带宽的IR光路, 进入IRE的平坦表面,从IRE的至少一个凸表面内部反射至少一次,其可以接触流体,离开IRE的平坦表面并在检测器处接收。 该装置还包括用于为源供电并从每个光路的检测器接收输出的电子装置。 可以控制该装置以独特地确定在每个路径的唯一确定的频率下IRE内反射的IR光,并传送与所检测到的IR光有关的信息。
    • 10. 发明申请
    • NIR spectroscopy method for analyzing chemical process components
    • 用于分析化学过程组分的近红外光谱法
    • US20040084623A1
    • 2004-05-06
    • US10686725
    • 2003-10-17
    • Yicheng LongTadeusz DabrosHassan Hamza
    • G01N021/35G01J005/02
    • G01N21/359G01N21/3563G01N21/8507
    • A method is described for providing rapid on-line analyses of chemical compositions such as chemical process streams, utilizing near-infrared (NIR) spectroscopy in combination with chemometrics. In the method, for each type of analysis to be conducted, a database is provided by analyzing a series of samples using standard laboratory analytical procedures, utilizing the results as reference values to establish quantitative calibration models from NIR spectroscopy using chemometric techniques and storing this information in a computer database. An NIR spectroscopic system is also provided comprising a transflectance or a transmittance probe coupled via fiber-optic cables to a stable white light source and a spectrograph. The probe is inserted into a test sample or chemical process stream to be analyzed, a stable white light of selected wavelength range is beamed to the probe and the spectra obtained on the spectrograph are recorded. Finally the spectra obtained are correlated to the reference data stored in the computer to obtain a rapid measurement of the analysis desired.
    • 描述了一种用于提供化学组成如化学工艺流的快速在线分析的方法,其利用近红外(NIR)光谱与化学计量学结合。 在该方法中,对于要进行的每种类型的分析,通过使用标准实验室分析程序分析一系列样品来提供数据库,利用结果作为参考值,使用化学计量技术从NIR光谱学建立定量校准模型并存储该信息 在计算机数据库中。 还提供了一种近红外光谱系统,其包括通过光纤电缆耦合到稳定的白光源和光谱仪的透射率或透射率探测器。 将探针插入待分析的测试样品或化学工艺流中,将所选波长范围的稳定白光束照射到探针上,并记录在光谱仪上获得的光谱。 最后,所获得的光谱与存储在计算机中的参考数据相关,以获得所需分析的快速测量。