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    • 2. 发明授权
    • Container fill level and pressurization inspection using
multi-dimensional images
    • 集装箱填充水平和加压检查使用多维图像
    • US5864600A
    • 1999-01-26
    • US796237
    • 1997-02-06
    • Glenn GrayClayton WoodHelmut W. Klotzsch
    • Glenn GrayClayton WoodHelmut W. Klotzsch
    • G01B15/00B07C5/34B65B3/26B65D90/48G01N23/04G01N23/06G01N23/10
    • G01F23/2885B07C5/3404B65B3/26G01N23/06G01N23/10
    • A container inspection system for inspecting a moving container includes a radiation source positioned to direct radiation at the moving container. A radiation detector is positioned to receive a portion of the radiation from the radiation source that is not absorbed or blocked by the moving container and to generate electrical signals in response thereto. Processing circuitry produces multi-dimensional image data for the moving container based on the electrical signals generated by the radiation detector, and compares at least a first portion of the multi-dimensional image data to a corresponding portion of the multi-dimensional image data for a standard container. Thereafter, the processing circuitry determines, based on a result of the comparison, one or more characteristics of the container from the set of characteristics including the fill level of the container, whether the container is underfilled, whether the container is overfilled, whether the container is properly pressurized, and whether the container is sealed.
    • 用于检查移动容器的容器检查系统包括定位成在移动容器处引导辐射的辐射源。 放射线检测器被定位成接收来自辐射源的辐射的一部分,其不被移动的容器吸收或阻挡,并响应于此产生电信号。 处理电路基于由辐射检测器产生的电信号,为运动容器生成多维图像数据,并将多维图像数据的至少第一部分与多维图像数据的对应部分进行比较 标准容器 此后,处理电路基于比较的结果,确定容器的一个或多个特性,包括容器的填充水平,容器底部是否充满,容器是否过满, 适当加压,以及容器是否被密封。
    • 5. 发明授权
    • Emission detection systems for determining the presence of contaminants
    • 用于确定污染物存在的排放检测系统
    • US5558836A
    • 1996-09-24
    • US316905
    • 1994-10-03
    • David P. RounbehlerDirk AppelDaniel A. DussaultThomas M. LevineJonathan E. Bosworth
    • David P. RounbehlerDirk AppelDaniel A. DussaultThomas M. LevineJonathan E. Bosworth
    • G01N21/15G01N21/90
    • G01N21/15G01N21/9018
    • A detection system for detecting the emission (i.e., the fluorescence or phosphorescence) from a contaminant contained in a sample gas. In order to keep the optics of the system clean and maintain a high signal-to-noise ratio in the detected signal, the detection system contains a housing separated into illumination and sample chambers by an aperture-containing partition. A sample inlet port is connected to the sample chamber, and a purge inlet port is connected to the illumination chamber to direct the purge and sample gasses into their respective chambers. A vacuum system is connected to a vacuum port on the sample chamber to simultaneously draw the sample and purge gasses into their chambers through the inlet ports; the purge gas is then drawn through the aperture and into the sample chamber. Finally, both gasses are drawn out of the sample chamber through the vacuum port. Thus, the vacuum provides a flow of sample gas into the sample chamber, and a flow of purge gas into the illumination chamber to reduce contact between the sample gas and a portion of the optics, thereby keeping them free of debris.
    • 一种用于从包含在样品气体中的污染物检测发射(即,荧光或磷光)的检测系统。 为了保持系统的光学系统清洁并且在检测到的信号中保持高的信噪比,检测系统包含通过孔径分隔分隔成照明和样品室的壳体。 样品入口连接到样品室,净化入口连接到照明室,以将吹扫和样品气体引导到它们各自的室中。 真空系统连接到样品室上的真空端口,以同时抽取样品并通过入口将气体吹扫到其室内; 吹扫气体然后被吸入孔中并进入样品室。 最后,气体都通过真空口从样品室中抽出。 因此,真空提供样品气体流入样品室,以及吹扫气体流入照明室,以减少样品气体和光学部件之间的接触,从而保持它们没有碎屑。
    • 7. 发明授权
    • Water container inspection
    • 水箱检验
    • US6130093A
    • 2000-10-10
    • US972451
    • 1997-11-18
    • Daniel DussaultDavid H. FineDavid P. Rounbehler
    • Daniel DussaultDavid H. FineDavid P. Rounbehler
    • G01N21/90G01N27/66G01N35/02
    • G01N21/9018G01N27/66Y10T436/113332Y10T436/115831
    • An apparatus is used to determine whether a container moving along a conveyor is suitable for storing water. The apparatus includes a sampler that obtains a sample from the interior of the container as the container moves along the conveyor. A PID is connected to the sampler to receive the sample and produce a signal corresponding to contents of the sample. A controller is connected to the PID and receives and analyzes the signal to determine whether the container is suitable for storing water. The apparatus may include a vacuum source connected to the PID that produces a reduced pressure for drawing the sample through the PID. A flow restrictor may be positioned between the sampler and PID. The flow restrictor may provide variable resistance to set a desired clearance time through the PID and sensitivity of the PID.
    • 一种装置用于确定沿输送机移动的容器是否适于储存水。 该装置包括一个取样器,当容器沿输送机移动时,该取样器从容器的内部获得样品。 PID连接到采样器以接收样品并产生与样品内容相对应的信号。 控制器连接到PID,并接收并分析信号以确定容器是否适合储存水分。 该装置可以包括连接到PID的真空源,其产生用于通过PID绘制样品的减压。 流量限制器可以位于采样器和PID之间。 流量限制器可以提供可变电阻,以通过PID的PID和灵敏度设置期望的间隙时间。
    • 9. 发明授权
    • Container fill level and pressurization inspection using
multi-dimensional images
    • 集装箱填充水平和加压检查使用多维图像
    • US5602890A
    • 1997-02-11
    • US534846
    • 1995-09-27
    • Glenn GrayClayton WoodHelmut W. Klotzsch
    • Glenn GrayClayton WoodHelmut W. Klotzsch
    • G01B15/00B07C5/34B65B3/26B65D90/48G01N23/04G01N23/06G01N23/10
    • G01F23/2885B07C5/3404B65B3/26G01N23/06G01N23/10
    • A container inspection system for inspecting a moving container includes a radiation source positioned to direct radiation at the moving container. A radiation detector is positioned to receive a portion of the radiation from the radiation source that is not absorbed or blocked by the moving container and to generate electrical signals in response thereto. Processing circuitry produces multi-dimensional image data for the moving container based on the electrical signals generated by the radiation detector, and compares at least a first portion of the multi-dimensional image data to a corresponding portion of the multi-dimensional image data for a standard container. Thereafter, the processing circuitry determines, based on a result of the comparison, one or more characteristics of the container from the set of characteristics including the fill level of the container, whether the container is underfilled, whether the container is overfilled, whether the container is properly pressurized, and whether the container is sealed.
    • 用于检查移动容器的容器检查系统包括定位成在移动容器处引导辐射的辐射源。 放射线检测器被定位成接收来自辐射源的辐射的一部分,其不被移动的容器吸收或阻挡,并响应于此产生电信号。 处理电路基于由辐射检测器产生的电信号,为运动容器生成多维图像数据,并将多维图像数据的至少第一部分与多维图像数据的对应部分进行比较 标准容器 此后,处理电路基于比较的结果,确定容器的一个或多个特性,包括容器的填充水平,容器底部是否充满,容器是否过满, 适当加压,以及容器是否被密封。