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    • 22. 发明授权
    • Flapper-type sealing system for a removable bottom founded structure
    • Flapper型密封系统,用于可拆卸的底座结构
    • US4695192A
    • 1987-09-22
    • US835420
    • 1986-03-03
    • Richard New
    • Richard New
    • E02B3/16E02B17/00E02D23/16
    • E02B3/16E02B17/00E02B2017/0052
    • The Removable Bottom Founded Structure (RBFS) is an offshore platform for petroleum drilling and producing operations intended for deployment in waters with severe weather and iceberg conditions. The structure is normally held down by gravity, but during the deballasting procedure a hold-down system is employed to keep the platform on the subbase until site evacuation. The system that is used to hold the platform down onto the subbase is located where the platform meets the subbase. It operates on the principle of hydrostatics. On the underside of the columns there are multiple chambers which may be evacuated by pumping and which are vented to the outside atmosphere. Flexible seals that define these chambers are positively engaged by this evacuation to create a fluid-tight seal so that no seawater will enter the evacuated chambers. The reduction of the buoyancy forces in the chambers will hold the platform onto the subbase until such time as the platform is totally deballasted. Once that has occurred, the hydrostatic hold-down system is disengaged and the platform will quickly rise to the surface.
    • 可移动底部结构(RBFS)是用于石油钻探和生产作业的海上平台,旨在部署在恶劣天气和冰山条件的水域。 该结构通常被重力压住,但是在卸载过程中,采用压紧系统将平台保持在底座上,直到抽空。 用于将平台保持在子基础上的系统位于平台与底座相交的位置。 它以流体静力学原理运行。 在柱的下侧有多个室,可以通过泵送排空,并且排放到外部大气。 限定这些腔室的柔性密封件通过这种抽空而正向接合,以产生流体密封,使得海水不会进入抽真空室。 室内的浮力的减少将使平台保持在底座上,直到平台被完全去除。 一旦发生这种情况,静压压紧系统就会脱离,平台将快速上升到表面。
    • 23. 发明申请
    • Contactless obstacle detection for power doors and the like
    • 电动门等的非接触式障碍物检测
    • US20110295469A1
    • 2011-12-01
    • US12008430
    • 2008-01-11
    • Abbas RafiiRichard NewSunil AcharyaTimothy Droz
    • Abbas RafiiRichard NewSunil AcharyaTimothy Droz
    • E05F15/02G06F17/00
    • E05F15/43E05F2015/434E05F2015/483E05Y2900/531G06T7/254G06T2207/10028G06T2207/30248
    • Time-of-flight (TOF) three-dimensional sensing systems are deployed on or in a motor vehicle to image contact zones associated with potential contact between an avoidable object and the vehicle or vehicle frame and/or remotely controllable motorized moving door or liftgate. An algorithm processes depth data acquired by each TOF system to determine whether an avoidable object is in the associated contact zone. If present, a control signal issues to halt or reverse the mechanism moving the door. A stored database preferably includes a depth image of the contact zone absent any object, an image of the door, and volume of the door. Database images are compared to newly acquired depth images to identify pixel sensors whose depth values are statistically unlikely to represent background or the door. Pixels within the contact zone so identified are an object, and the control signal is issued.
    • 飞行时间(TOF)三维感测系统部署在机动车辆上或机动车辆中,以对与可避免物体与车辆或车辆框架和/或远程可控的电动移动门或升降门之间的潜在接触相关联的图像接触区进行成像。 一种算法处理由每个TOF系统获取的深度数据,以确定一个可避免的对象是否在相关联的接触区域中。 如果存在,则控制信号出现停止或反转移动门的机构。 存储的数据库优选地包括没有任何对象的接触区域的深度图像,门的图像和门的体积。 将数据库图像与新获取的深度图像进行比较,以识别其深度值在统计上不太可能代表背景或门的像素传感器。 所识别的接触区域内的像素是对象,并且发出控制信号。
    • 24. 发明授权
    • System and method for generating warranty and pricing information for data storage apparatus
    • 为数据存储设备生成保修和定价信息的系统和方法
    • US07606948B2
    • 2009-10-20
    • US11004527
    • 2004-12-02
    • Jorge CampelloBruce A. WilsonRichard New
    • Jorge CampelloBruce A. WilsonRichard New
    • G06F3/00
    • G06Q30/06G06Q10/087G06Q20/203
    • Embodiments of the present invention provide a system and a method for generating warranty and pricing information for one or more data storage apparatuses. In one embodiment, a system for processing status parameters of one or more data storage apparatuses comprises at least one host system configured to retrieve one or more status parameters of one or more data storage apparatus; a vendor system; and a network coupled with the at least one host system and the vendor system. The at least one host system is configured to send the one or more status parameters via the network to the vendor system. The vendor system is configured to use the one or more status parameters to generate any one or more of warranty information, pricing information, and design improvement information for the data storage apparatus.
    • 本发明的实施例提供一种用于为一个或多个数据存储设备产生保修和定价信息的系统和方法。 在一个实施例中,用于处理一个或多个数据存储装置的状态参数的系统包括被配置为检索一个或多个数据存储装置的一个或多个状态参数的至少一个主机系统; 供应商系统; 以及与所述至少一个主机系统和供应商系统耦合的网络。 至少一个主机系统被配置为经由网络将一个或多个状态参数发送到供应商系统。 供应商系统被配置为使用一个或多个状态参数来生成用于数据存储设备的任何一个或多个保修信息,定价信息和设计改进信息。
    • 25. 发明授权
    • Method for bit-byte synchronization in sampling a data string
    • 数据串采样中位字节同步的方法
    • US07388938B2
    • 2008-06-17
    • US10856706
    • 2004-05-28
    • Mario BlaumRichard NewBruce Wilson
    • Mario BlaumRichard NewBruce Wilson
    • H04L7/00
    • G11B20/10009G11B20/10046H04L7/0066H04L7/04H04L25/497
    • Bit and byte synchronization for sampling and decoding a data string is provided a single data field u. The data string x has pre-pended to it a short string of 1s (ones), followed by u to yield a string y= . . . 1111, u, x. The string is pre-coded by convolution with 1/(1⊕D2). PRML-sampling of y starts at an initial phase, and vectors are obtained from that string by sampling at pre-selected phases following the initial sampling point. The vectors of y are compared with vectors corresponding to PRML samples of an initial set of bits in u obtained at predetermined phases. The pair of y, u vectors exhibiting the minimum Euclidian distance yields a sampling correction value by which the initial sampling phase is corrected and a new initial sampling point preceding x is determined. Here, bit and byte synchronization have been achieved and sampling of x proceeds at the corrected phase, from the new initial sampling point.
    • 为数据串采样和解码的位和字节同步提供单个数据字段u。 数据串x已经预先提供了一个1s(1)的短串,其次是u得到一个字符串y =。 。 。 1111,u,x。 该字符串通过卷积与1 /(1⊕D 2 )进行预编码。 y的PRML采样从初始阶段开始,并且通过在初始采样点之后的预选阶段进行采样从该串中获得向量。 将y的向量与对应于在预定阶段获得的u的初始位组的PRML样本相对应的向量进行比较。 呈现最小欧几里德距离的一对y,u向量产生采样校正值,通过该取样校正值校正初始采样相位,并且确定x之前的新的初始采样点。 这里,已经实现了比特和字节同步,并且从新的初始采样点在校正阶段进行x的采样。