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    • 1. 发明申请
    • Acoustic fence
    • 声篱笆
    • US20060018198A1
    • 2006-01-26
    • US10967953
    • 2004-10-18
    • Larry McDonaldGary Hicks
    • Larry McDonaldGary Hicks
    • G01S15/04
    • G01S7/523G01S15/04G01S15/876
    • Methods and apparatus determine if an underwater intruder passes under a protective boundary. A sonar sensor system comprises a plurality of sonar sensor modules that are spaced on a protective boundary. A sonar sensor module comprises a sonar transducer (sonar array) that is characterized by an omni-directional radiation pattern that may overlap an omni-directional radiation pattern of an adjacent sonar sensor module transducer. The sonar sensor module collects sonar data such as range information of the target in relation to time. A central processor obtains the sonar data from each sonar module through a telemetry link. The central processor processes the sonar data from the plurality of sonar sensor modules in order to determine an estimated path of the target and may determine if the target should be considered as a threatening underwater intruder from a calculated threat level estimate based on this data.
    • 方法和装置确定水下入侵者是否通过保护边界。 声纳传感器系统包括在保护性边界上间隔开的多个声纳传感器模块。 声纳传感器模块包括声纳传感器(声纳阵列),其特征在于可以与相邻声纳传感器模块换能器的全向辐射图案重叠的全向辐射图案。 声纳传感器模块收集相对于时间的目标的范围信息的声纳数据。 中央处理器通过遥测链路从每个声纳模块获得声纳数据。 中央处理器处理来自多个声纳传感器模块的声纳数据,以便确定目标的估计路径,并且可以基于该数据来从所计算的威胁级别估计中确定目标是否应被视为威胁水下入侵者。
    • 3. 发明申请
    • HARBOR FENCE
    • 海港风情
    • US20050232079A1
    • 2005-10-20
    • US10863986
    • 2004-06-09
    • Larry McDonald
    • Larry McDonald
    • B63G9/00B63G9/04B63J99/00G01S7/00G01S15/87G01S15/04
    • B63G9/04B63G2009/005G01S7/003G01S7/529G01S7/539G01S7/54G01S15/04G01S15/66G01S15/87G01S15/876
    • Methods and apparatus determine if an intruder passes into a security zone that is associated with a waterfront asset. An embodiment of the invention provides a harbor fence system that is designed to be deployed in water around ships or other waterfront assets to serve as a line-of-demarcation in order to provide protection. The harbor fence system comprises a series of spars that protrude above the water surface and that communicate with a computer with a telemetry subsystem. Each spar contains electronic sensors, e.g. water immersion sensors and accelerometers, and circuitry to detect an intrusion and to communicate the location of the intrusion to a computer control station. Spars may communicate wirelessly and may also be solar powered. Additionally, the embodiment may also determine whether an underwater intruder is passing under a protective boundary, in which the harbor fence system interfaces to an underwater sonar sensor subsystem.
    • 方法和设备确定入侵者是否进入与海滨资产相关联的安全区域。 本发明的一个实施例提供了一种港口围栏系统,其设计成部署在船舶或其他海滨资产周围的水中,以作为划分线以提供保护。 港口围栏系统包括突出在水面以上并与具有遥测子系统的计算机通信的一系列翼梁。 每个翼梁包含电子传感器,例如 水浸传感器和加速度计,以及用于检测入侵并将入侵位置传达到计算机控制站的电路。 Spars可以无线通信,也可以是太阳能供电。 此外,该实施例还可以确定水下入侵者是否经过保护边界,其中港口围栏系统与水下声纳传感器子系统接口。
    • 5. 发明申请
    • HARBOR FENCE
    • 海港风情
    • US20070133350A1
    • 2007-06-14
    • US11265150
    • 2005-11-03
    • Larry McDonald
    • Larry McDonald
    • G01S15/04B63G9/00
    • B63G9/04B63G2009/005G01S7/003G01S7/529G01S7/539G01S7/54G01S15/04G01S15/66G01S15/87G01S15/876
    • Methods and apparatus determine if an intruder passes into a security zone that is associated with a waterfront asset. An embodiment of the invention provides a harbor fence system that is designed to be deployed in water around ships or other waterfront assets to serve as a line-of-demarcation in order to provide protection. The harbor fence system comprises a series of spars that protrude above the water surface and that are connected with an electrical computer with a telemetry subsystem. Each spar contains electronic sensors, e.g. water immersion sensors and accelerometers, and circuitry to detect an intrusion and to communicate the location of the intrusion to a computer control station. The embodiment also facilitates deploying and retrieving the harbor fence system. Additionally, the embodiment may also determine whether an underwater intruder is passing under a protective boundary, in which the harbor fence system interfaces to an underwater sonar sensor subsystem.
    • 方法和设备确定入侵者是否进入与海滨资产相关联的安全区域。 本发明的一个实施例提供了一种港口围栏系统,其设计成部署在船舶或其他海滨资产周围的水中,以作为划分线以提供保护。 港口围栏系统包括突出在水面以上并与具有遥测子系统的电脑连接的一系列翼梁。 每个翼梁包含电子传感器,例如 水浸传感器和加速度计,以及用于检测入侵并将入侵位置传达到计算机控制站的电路。 该实施例还有助于部署和检索港口围栏系统。 此外,该实施例还可以确定水下入侵者是否经过保护边界,其中港口围栏系统与水下声纳传感器子系统接口。
    • 6. 发明申请
    • Configurable system and method for power and process plant modeling
    • 电力和过程工厂建模的可配置系统和方法
    • US20070038321A1
    • 2007-02-15
    • US11193698
    • 2005-07-29
    • Larry McDonaldScott WilliamsScott AtkinsAlfred Ong'iroIvan Johnson
    • Larry McDonaldScott WilliamsScott AtkinsAlfred Ong'iroIvan Johnson
    • G06F19/00G06F17/10
    • G05B17/02
    • A method for simulating an industrial plant includes generating a library of industrial plant component types using user input. The library includes properties of the component types and rules to generate scripts in accordance with property values. The method further includes assembling a configuration of industrial plant components from the library using user input. The configuration is assembled into an editor configured to accept a layout and connection of the configuration of industrial plant components and to accept a configuration and setting of the properties of the industrial plant components. The method also includes generating a script or scripts for industrial plant components in the configuration of industrial plant in accordance with the rules, wherein the generated scripts include mathematical relationships within or among the industrial plant components, or both. The mathematical relationships are then solved. Results are either displayed or used to control an industrial plant.
    • 用于模拟工厂的方法包括使用用户输入生成工业设备部件类型库。 库包括组件类型和规则的属性,以根据属性值生成脚本。 该方法还包括使用用户输入从库中组装工业设备组件的配置。 配置被组装成编辑器,其被配置为接受工业设备部件的配置的布局和连接,并且接受工业设备部件的属性的配置和设置。 该方法还包括根据规则在工业设备的配置中生成用于工业设备部件的脚本或脚本,其中所生成的脚本包括工业设备组件内部或之中的数学关系,或两者。 然后解决数学关系。 结果显示或用于控制工厂。