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    • 5. 发明申请
    • SYSTEMS AND METHODS OF USE FOR SUBMERGED DEPLOYMENT OF OBJECTS
    • 用于物体部署的系统和方法
    • US20120298029A1
    • 2012-11-29
    • US12355966
    • 2009-01-19
    • Frederick VosburghCharles A. Pell
    • Frederick VosburghCharles A. Pell
    • B63G8/00
    • B63G8/001B63B2035/405B63G8/28
    • A submersible object management (SOM) system for releasing and/or recovering a plurality of submersible objects within a body of liquid includes a hold and a deployment system. The hold is configured to store the plurality of submersible objects. The deployment system is selectively operable to controllably release at least one of the plurality of submersible objects from the hold into submersion in the body of liquid and/or selectively operable to controllably direct at least one of the plurality of submersible objects into the hold from submersion in the body of liquid. The deployment system includes a guide that is selectively extendable to direct the at least one submersible object, the guide including a plurality of extendable guide members configured to engage the at least one submersible object.
    • 用于释放和/或恢复液体内的多个潜水物体的潜水物体管理(SOM)系统包括保持和展开系统。 保持构造成存储多个潜水物体。 所述展开系统可选择性地可操作以可控制地将所述多个潜水物体中的至少一个从所述保持件释放到浸没在所述液体中和/或选择性地可操作以可控制地将所述多个潜水物体中的至少一个引导到所述保持件中以免浸没 在液体中。 所述展开系统包括可选择地延伸以引导所述至少一个潜水物体的引导件,所述引导件包括被配置为接合所述至少一个潜水物体的多个可延伸引导构件。
    • 6. 发明申请
    • WATER SUBMERSIBLE ELECTRONICS ASSEMBLY AND METHODS OF USE
    • 水下电子组件及其使用方法
    • US20080225643A1
    • 2008-09-18
    • US11495957
    • 2006-07-28
    • Frederick Vosburgh
    • Frederick Vosburgh
    • H04B11/00B63G8/00
    • H04B13/02B63B22/08
    • A submersible electronics device for use in a body of water and a substratum floor below the body of water includes a submersible housing, an operational electronics system, and a mobility system. The operational electronics system is mounted in and/or on the housing. The operational electronics system is adapted to communicate with another device and/or to sense at least one of a physical signal and an environmental parameter. The mobility system is selectively operable to fluidize the substratum, vibrate the housing, and/or adjust a buoyancy of the submersible electronics device to selectively move the housing into the substratum to at least partially bury the housing in the substratum and/or to selectively move the housing out of the substratum to at least partially unbury the housing from the substratum.
    • 用于水体和水体下面的底层的潜水电子设备包括潜水式外壳,操作电子系统和移动系统。 操作电子系统安装在壳体中和/或壳体上。 操作电子系统适于与另一设备通信和/或感测物理信号和环境参数中的至少一个。 移动系统可选择性地可操作以使基底流体化,振动壳体和/或调节潜水电子设备的浮力以选择性地将壳体移动到基底中以至少部分地将壳体埋入基底中和/或选择性地移动 将基座的外壳从底层至少部分地从外壳排出。
    • 7. 发明申请
    • Devices and Methods for Antifouling
    • 防污设备和方法
    • US20080164145A1
    • 2008-07-10
    • US11940568
    • 2007-11-15
    • Frederick Vosburgh
    • Frederick Vosburgh
    • F04F11/00
    • F04B17/00F04B19/006
    • A method of clearing a surface of an object contaminated with a polar material includes the steps of: providing an object having a surface with a plurality of spaced apart electrodes, the electrodes being connected with a voltage source and capable of sustaining a time-varying charge; inducing a first electric field on the plurality of electrodes of a magnitude and for a duration to induce drops of the polar material to take a first dimensional aspect; and inducing a second electric field on the plurality of electrodes of a magnitude and for a duration to induce the drops of the polar material to take a second dimensional aspect. With this method, surfaces such as the head window of a periscope can be cleaned/cleared of contaminants without requiring a manual cleaning and without the use of problematic coatings.
    • 一种清除被极性材料污染的物体的表面的方法包括以下步骤:提供具有多个间隔开的电极的表面的物体,电极与电压源连接并能够维持时变电荷 ; 在所述多个电极上引起大小和持续时间的第一电场以诱导所述极性材料的液滴以采取第一维度方面; 以及在所述多个电极上引起大小和持续时间的第二电场以诱导所述极性材料的液滴以采取第二维度方面。 使用这种方法,可以清洁/清除潜像镜的头部窗口的表面,而不需要手动清洁并且不使用有问题的涂层。
    • 9. 发明授权
    • Method of data compression and apparatus for its use in monitoring
machinery
    • 数据压缩方法及其在监控机械中的应用
    • US5602749A
    • 1997-02-11
    • US372046
    • 1995-01-12
    • Frederick Vosburgh
    • Frederick Vosburgh
    • G06F17/40G06F15/20
    • H03M7/3059G05B23/0221G05B23/0235G07C3/00Y10S707/99945Y10S707/99948
    • The present invention relates to a method and apparatus for monitoring machinery in which data is collected and stored based on application specific retention rules. Based on an alarm value, data records are adjusted by reducing the spectral resolution, coefficient precision and time intervals between records. An alarm is activated when the data value is greater than a predetermined alarm threshold value. Memory management can compare the memory availability to projected requirements. If the projected memory requirements exceeds memory availability, the data records can be interactively decimated. When decimation cannot make available sufficient memory for projected requirements within the retention rules, an alarm is issued. Collected data can be transferred with a removable nonvolatile memory or infrared communications with a computer device.
    • 本发明涉及一种用于监视机器的方法和装置,其中根据应用专用保留规则收集和存储数据。 基于报警值,通过降低记录之间的光谱分辨率,系数精度和时间间隔来调整数据记录。 当数据值大于预定的报警阈值时,报警被激活。 内存管理可以将内存可用性与预计需求进行比较。 如果预计的内存要求超过内存可用性,则可以交互地抽取数据记录。 当抽取不能在保留规则中为预计需求提供足够的内存时,会发出报警。 收集的数据可以通过可移动的非易失性存储器或与计算机设备的红外通信进行传输。