![CONTAINER INSPECTION SYSTEM](/abs-image/US/2007/11/29/US20070276619A1/abs.jpg.150x150.jpg)
基本信息:
- 专利标题: CONTAINER INSPECTION SYSTEM
- 专利标题(中):集装箱检查系统
- 申请号:US11023890 申请日:2004-12-28
- 公开(公告)号:US20070276619A1 公开(公告)日:2007-11-29
- 发明人: Byron Sugahara , Avrum Freelund , Hal Haygood , Robert Goertz , John Chester , Stephen Poole , Robert Stout
- 申请人: Byron Sugahara , Avrum Freelund , Hal Haygood , Robert Goertz , John Chester , Stephen Poole , Robert Stout
- 申请人地址: US DE Wilmington
- 专利权人: Great American Lines, Inc.
- 当前专利权人: Great American Lines, Inc.
- 当前专利权人地址: US DE Wilmington
- 主分类号: G06F19/00
- IPC分类号: G06F19/00 ; G06F17/40
摘要:
The container inspection system operates globally at container handling facilities around the world and includes at least one transport apparatus located at a container handling facility having a spreader or other framework for connecting and handling cargo containers of all shapes and sizes. The transport apparatus is in communication with a computer network including several computing devices that provide to the transport apparatus comparison data including load models, load signatures, weight profile, and sensory limits related to a particular container. Sensors can be located on the spreader, inside the container, and invasively through the container and provide scanned characteristic data that is compared to the comparison data to determine a pass status or a fail status for the container. Ancillary data and authority input may be provided to the system by outside sources, such as other inspection systems and governmental entities. The transport apparatuses then move the connected container to a first location if a pass status is determined and a second location if a fail status is determined. The computer network may include a global host computer, a local host computer, and a local transport computer and employs expert system methodology.
摘要(中):
该集装箱检验系统在世界各地的集装箱处理设施全球运行,并且至少包括一个位于集装箱处理设施的运输设备,该运输设备具有用于连接和处理各种形状和尺寸的货物集装箱或其他框架。 运输装置与计算机网络通信,该计算机网络包括向运输设备提供比较数据的几个计算设备,比较数据包括与特定容器相关的负载模型,负载签名,重量分布和感官限制。 传感器可以位于扩展器上,容器内部,并通过容器入侵,并提供与比较数据进行比较的扫描特征数据,以确定容器的通过状态或故障状态。 辅助数据和权限输入可以由外部来源(如其他检查系统和政府实体)提供给系统。 然后,如果确定通过状态,则运输设备将连接的容器移动到第一位置,并且如果确定了故障状态,则运送设备被移动到第二位置。 计算机网络可以包括全球主机计算机,本地主机计算机和本地传输计算机,并且采用专家系统方法。
公开/授权文献:
- US07324921B2 Container inspection system 公开/授权日:2008-01-29