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    • 2. 发明授权
    • Termination unit
    • 终止单位
    • US08624109B2
    • 2014-01-07
    • US12532230
    • 2008-03-19
    • Chresten TraeholtDag WillenMark RodenJerry C. TolbertDavid LindsayPaul W. FisherCarsten Thidemann Nielsen
    • Chresten TraeholtDag WillenMark RodenJerry C. TolbertDavid LindsayPaul W. FisherCarsten Thidemann Nielsen
    • H01B12/00H01R4/68H02G15/34
    • H02G15/34
    • This invention relates to a termination unit comprising an end-section of a cable. The end section of the cable defines a central longitudinal axis and comprising end-parts of N electrical phases, an end-part of a neutral conductor and a surrounding thermally insulation envelope adapted to comprising a cooling fluid. The end-parts of the N electrical phases and the end-part of the neutral conductor each comprising at least one electrical conductor and being arranged in the cable concentrically around a core former with a phase 1 located relatively innermost, and phase N relatively outermost in the cable, phase N being surrounded by the neutral conductor, electrical insulation being arranged between neighboring electrical phases and between phase N and the neutral conductor, and wherein the end-parts of the neutral conductor and the electrical phases each comprise a contacting surface electrically connected to at least one branch current lead to provide an electrical connection: The contacting surfaces each having a longitudinal extension, and being located sequentially along the longitudinal extension of the end-section of the cable. The branch current leads being individually insulated from said thermally insulation envelope by individual electrical insulators.
    • 本发明涉及一种包括电缆端部的端接单元。 电缆的端部段限定了中心纵向轴线并且包括N个电相的端部部分,中性导体的端部部分和适于包括冷却流体的周围的热绝缘外壳。 N个电相的端部和中性导体的端部各自包括至少一个电导体并且布置在电缆中同心地围绕具有位于相对最内部的相1的核心形成体,并且N相相对最外侧 电缆,N相被中性导体包围,电绝缘件布置在相邻的电相之间以及N相和中性导体之间,并且其中中性导体和电相的端部各自包括电连接的接触表面 至少一个分支电流引线以提供电连接:每个接触表面具有纵向延伸,并且沿着电缆的端部的纵向延伸部顺序地定位。 分支电流引线通过各个电绝缘体与所述绝热外壳单独绝缘。
    • 3. 发明授权
    • Superconductive multi-phase cable system, a method of its manufacture and its use
    • 超导多相电缆系统,其制造方法及其应用
    • US08326386B2
    • 2012-12-04
    • US11912083
    • 2006-04-21
    • Dag WillénChresten TraeholtManfred DäumlingJerry C. TolbertMark RodenDavid Lindsay
    • Dag WillénChresten TraeholtManfred DäumlingJerry C. TolbertMark RodenDavid Lindsay
    • H01L39/24
    • H01B12/14H01B12/16Y02E40/647Y10T29/49014
    • The invention relates to a superconductive multi-phase, fluid-cooled cable system comprising a) a cable comprising at least three electrical conductors constituting at least two electrical phases and a zero- or neutral conductor, said electrical conductors being mutually electrically insulated from each other, and b) a thermal insulation defining a central longitudinal axis and having an inner surface and surrounding the cable, said inner surface of said thermal insulation forming the radial limitation of a cooling chamber for holding a cooling fluid for cooling said electrical conductors. The invention further relates to a method of manufacturing a cable system and to its use. The object of the present invention is to provide a simplified manufacturing and installation scheme for a fluid cooled cable system. The problem is solved in that said cable—at least over a part of its length—is located eccentrically relative to said central longitudinal axis when viewed in a cross section perpendicular to said longitudinal axis and where the eccentric location has the function of accommodating thermal shrinkage and expansion of the cable with respect to the thermal insulation.
    • 本发明涉及一种超导多相流体冷却的电缆系统,其包括:a)包括构成至少两个电相的至少三个电导体和零或中性导体的电缆,所述电导体彼此相互电绝缘 以及b)限定中心纵向轴线并具有内表面并围绕所述电缆的绝热体,所述隔热层的所述内表面形成用于保持用于冷却所述电导体的冷却流体的冷却室的径向限制。 本发明还涉及制造电缆系统及其用途的方法。 本发明的目的是提供一种用于流体冷却的电缆系统的简化制造和安装方案。 解决的问题是,当垂直于所述纵向轴线的横截面中观察时,所述电缆 - 至少在其长度的一部分上 - 相对于所述中心纵向轴线偏心定位,并且偏心位置具有适应热收缩的功能 并且电缆相对于隔热件的膨胀。
    • 4. 发明申请
    • Subsea Tanker Hydrocarbon Production System
    • 海底油罐烃生产系统
    • US20080210434A1
    • 2008-09-04
    • US11794840
    • 2006-01-09
    • David Lindsay Edwards
    • David Lindsay Edwards
    • E21B43/36
    • E21B43/01B63B22/24B63B35/44B65D88/78
    • A subsea and modular tanker-based hydrocarbon production system comprising a plurality of interlinked individual tank units which is wholly submersible, is wholly detachable from, and wholly re-attachable to, its associated subsea wellhead infrastructure. Modularity of the interlinked tank unit system allows for the processing, measurement, and storage of hydrocarbons from a wide variety of offshore hazard and water-depth related conditions and situations. In addition to being both detachable and re-attachable, the modularity of the system provides for a number of unit systems to be conjoined at surface and towed to market.
    • 基于海底和模块化油罐车的碳氢化合物生产系统,其包括完全潜水的多个相互连接的单独油箱单元,其完全可拆卸并完全可附接到其相关联的海底井口基础设施。 相互联系的罐单元系统的模块化允许从各种海上危险和水深相关的条件和情况处理,测量和储存碳氢化合物。 除了可拆卸和可重新连接之外,系统的模块化还提供了多个单元系统在地面上联结并被拖放到市场。
    • 5. 发明授权
    • Method and system for testing algorithm compliancy
    • 测试算法符合性的方法和系统
    • US06856953B1
    • 2005-02-15
    • US10021064
    • 2001-12-19
    • Matthew RandmaaMurali AnanthaDavid LindsayKeith Dillon
    • Matthew RandmaaMurali AnanthaDavid LindsayKeith Dillon
    • G06F11/00G10L11/00
    • G06F11/3672
    • The present invention relates to an algorithm for ensuring compliancy of an algorithm module when integrated in a real time software system. The compliancy tests may include a memory test, interrupt test, latency test and other tests, as well as combinations thereof. An inventive aspect of the present invention relates to a unit test harness for verifying that a software algorithm module meets performance and functional requirements when integrated in a complete real-time software system. A software algorithm module eliminates or reduces unwanted behavior by the caller or other software on a real-time software system due to incorrect operations, which may involve interrupts, memory usage, register usage and/or other factors.
    • 本发明涉及一种用于在集成在实时软件系统中时确保算法模块的符合性的算法。 兼容性测试可以包括记忆测试,中断测试,延迟测试和其他测试,以及其组合。 本发明的发明方面涉及用于在集成在完整的实时软件系统中时验证软件算法模块满足性能和功能需求的单元测试装置。 软件算法模块由于不正确的操作而消除或减少主叫方或其他软件在实时软件系统上的不必要的行为,这可能涉及中断,存储器使用,寄存器使用和/或其他因素。
    • 8. 发明申请
    • STEREO 3D FILMING
    • US20130201295A1
    • 2013-08-08
    • US13879455
    • 2011-10-10
    • Michael David Lindsay
    • Michael David Lindsay
    • H04N13/02
    • H04N13/282G03B35/04H04N13/239H04N13/296
    • A mobile camera rig (1) has a pair of cameras (2, 3) for filming a scene (4) and a chassis (4), which is bodily movable in the Y and Z directions, the X direction being to the scene (4). One camera (2) is mounted on rails (5) and provided with an actuator (6) for altering its position in the Y direction within the rig, that is altering its position laterally of the line of sight to the scene. It receives light from the scene via a beam splitting mirror (8) set at 45° to the line of sight. The other camera (3) is fixed above the mirror and oriented vertically to receive light reflected by the mirror. Movement of the camera (2) within the rig by the actuator changes the apparent inter-axial separation A of the cameras. The rig is provided with an inertial motion sensor (9) and is mounted on apparatus for its bodily movement, including bodily movement of the cameras in the Y and Z direction. The actuator (6) and the motion sensor (9) are connected to a controller (10). The controller is an adjunct to a manual inter-axial separation controller for altering the separation to suit the scene being filmed. The manual controller is not adapted to reduce the separation automatically when the cameras are moved bodily. The controller (10) detects the motion in accordance with the camera movement sensed and causes the separation to be reduced, whilst the cameras are in bodily movement. On cessation of the movement, the separation is restored or rest manually.
    • 移动摄像机(1)具有一对用于拍摄场景(4)的摄像机(2,3)和可在Y和Z方向上可移动的X(X方向)到场景的底盘(4) 4)。 一个摄像机(2)安装在轨道(5)上并设置有致动器(6),用于改变其在钻机内的Y方向上的位置,其将其位于视线的侧面的位置改变为现场。 它通过设置在45°视线的分束镜(8)从场景接收光。 另一台摄像机(3)固定在镜面上方并垂直取向以接收由镜子反射的光。 摄像机(2)通过执行器在钻机内的移动改变相机的表观间轴间距A. 钻机设有惯性运动传感器(9),并安装在身体运动的装置上,包括相机在Y和Z方向的身体运动。 致动器(6)和运动传感器(9)连接到控制器(10)。 控制器是手动轴间分离控制器的辅助装置,用于改变分离以适应被拍摄的场景。 手动控制器不适合在摄像机身体移动时自动减少分离。 控制器(10)根据感测到的摄像机运动来检测运动,并且在相机处于身体运动的同时使分离减小。 在停止运动时,手动恢复分离或休息。
    • 10. 发明申请
    • Susperconductive Multi-Phase Cable System, a Method of Its Manufacture and Its Use
    • 电导式多相电缆系统及其制造方法及其应用
    • US20100227764A1
    • 2010-09-09
    • US11912083
    • 2006-04-21
    • Dag WillénChresten TraeholtManfred DäumlingJerry C. TolbertMark RodenDavid Lindsay
    • Dag WillénChresten TraeholtManfred DäumlingJerry C. TolbertMark RodenDavid Lindsay
    • H01L39/04H01B12/10H01L39/24H01B12/16
    • H01B12/14H01B12/16Y02E40/647Y10T29/49014
    • The invention relates to a superconductive multi-phase, fluid-cooled cable system comprising a) a cable comprising at least three electrical conductors constituting at least two electrical phases and a zero- or neutral conductor, said electrical conductors being mutually electrically insulated from each other, and b) a thermal insulation defining a central longitudinal axis and having an inner surface and surrounding the cable, said inner surface of said thermal insulation forming the radial limitation of a cooling chamber for holding a cooling fluid for cooling said electrical conductors. The invention further relates to a method of manufacturing a cable system and to its use. The object of the present invention is to provide a simplified manufacturing and installation scheme for a fluid cooled cable system. The problem is solved in that said cable—at least over a part of its length—is located eccentrically relative to said central longitudinal axis when viewed in a cross section perpendicular to said longitudinal axis and where the eccentric location has the function of accommodating thermal shrinkage and expansion of the cable with respect to the thermal insulation.
    • 本发明涉及一种超导多相流体冷却的电缆系统,其包括:a)包括构成至少两个电相的至少三个电导体和零或中性导体的电缆,所述电导体彼此相互电绝缘 以及b)限定中心纵向轴线并具有内表面并围绕所述电缆的绝热体,所述隔热层的所述内表面形成用于保持用于冷却所述电导体的冷却流体的冷却室的径向限制。 本发明还涉及制造电缆系统及其用途的方法。 本发明的目的是提供一种用于流体冷却的电缆系统的简化制造和安装方案。 解决的问题是,当垂直于所述纵向轴线的横截面中观察时,所述电缆 - 至少在其长度的一部分上 - 相对于所述中心纵向轴线偏心定位,并且偏心位置具有适应热收缩的功能 并且电缆相对于隔热件的膨胀。