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    • 11. 发明授权
    • Network healing smart fiber optic switch
    • 网络治疗智能光纤交换机
    • US06912337B2
    • 2005-06-28
    • US10083095
    • 2002-02-26
    • John CarberryMichael L. SmithRichard Racinskas
    • John CarberryMichael L. SmithRichard Racinskas
    • H04B10/00H04J14/02G02B6/26G02B6/42
    • H04J14/029H04B10/032H04J14/0279H04J14/0294
    • A network healing smart fiber optic switch for fast, automatic switching between multiple paths of an optical transmission line with minimal disruption. The network healing smart fiber optic switch feeds each of multiple fiber optic inputs to a splitter. One of the outputs of the splitters go to an optical switch, which selects the optical signal to send to the output based on a control signal from a controller or analog selection circuit. The other outputs of the splitters go to the analog selection circuit, which outputs a control signal to the optical switch. The analog selection circuit compares the primary optical signal to a selected setpoint to determine the signal's validity. The analog selection circuit routes an alternate, or secondary, optical signal upon failure of the primary optical signal. After the primary signal is restored and valid for a specified period, the analog selection circuit deselects the secondary optical signal and routes the primary optical signal.
    • 一种网络治疗智能光纤交换机,用于在光传输线路的多条路径之间快速,自动切换,最少的中断。 网络治疗智能光纤交换机将多个光纤输入中的每一个馈送到分离器。 分路器的输出之一进入光开关,光开关基于来自控制器或模拟选择电路的控制信号选择发送到输出的光信号。 分路器的其他输出转到模拟选择电路,其向光开关输出控制信号。 模拟选择电路将主光信号与选定的设定值进行比较,以确定信号的有效性。 模拟选择电路在主光信号故障时路由交替或次级光信号。 在主信号恢复并在指定时间段内有效之后,模拟选择电路取消选择辅助光信号并路由主光信号。
    • 12. 再颁专利
    • Combined drilling apparatus and method
    • 组合式钻井装置及方法
    • USRE41141E1
    • 2010-02-23
    • US10317675
    • 2002-12-12
    • Michael L. SmithLeslie D. SkinnerCharles C. Overstreet
    • Michael L. SmithLeslie D. SkinnerCharles C. Overstreet
    • E21B19/08
    • E21B3/045E21B19/00E21B19/086E21B19/14E21B19/143E21B19/16E21B19/20E21B19/22E21B21/01
    • Method and apparatus for drilling, completion, well workovers and well control, combining an integrated lifting unit and a coiled tubing unit, the method and apparatus permit running jointed pipe and coil tubing in combination, and standing multiple joints of pipe near the unit. The invention combines a hydraulic pipe hoisting system, pipe handling systems and pipe racking containment apparatus. A hydraulic workover jack is combined with a multifunction injector head and a standpipe for fluid circulation. The invention may also include a rotary table for rotating pipe and/or a rotating power swivel to allow fluid circulation during pipe rotation. Also included are a gin pole, a winching system for jointed pipe, and a traveling head with traveling slips and stationary slips to allow pipe movement in the well. Hydraulic systems allow insertion and extraction of tools in a work string. The apparatus includes spoolable drill pipe including a connector, multi-section reel with core, connection to reel for fluid circulation, reel drive mechanism and a pipe pulling capability.
    • 钻井,完井,井身操作和油井控制的方法和装置,结合了一体式提升装置和连续油管装置,该方法和装置允许组合运行接合管和盘管,并在机组附近站立多个管道。 本发明结合了液压管道起重系统,管道处理系统和管道货架收容设备。 液压修井千斤顶与多功能注射器头和用于流体循环的立管相结合。 本发明还可以包括用于旋转管道的旋转工作台和/或旋转动力回转装置,以允许管道旋转期间的流体循环。 还包括一个杜松子酒杆,一个用于连接管道的绞盘系统,以及一个行进的头部,带有滑动条和固定的滑动装置,以允许管道在井中移动。 液压系统允许在工作串中插入和拔出工具。 该装置包括可旋转的钻杆,其包括连接器,具有芯部的多段卷取机,连接到用于流体循环的卷轴,卷轴驱动机构和拉管能力。
    • 13. 发明授权
    • Downhole valve
    • 井下阀门
    • US06776240B2
    • 2004-08-17
    • US10208115
    • 2002-07-30
    • Michael H. KenisonMichael L. Smith
    • Michael H. KenisonMichael L. Smith
    • E21B3406
    • E21B23/03E21B34/066E21B43/14E21B47/12E21B47/122Y10T137/87241Y10T137/87732Y10T137/87772
    • A valve for downhole well service, having a rotary indexer carrying an elastically-loaded valve element on a valve seat surface in a flow passage, the valve element adapted to obstruct one or more flow passages in the valve seat surface when aligned therewith. The valve may additionally, or alternatively, comprise an elastically-loaded valve element mounted in one or more flow passages in the valve seat surface, this valve element adapted to obstruct the flow passage in which it is installed when urged into contact with the valve seat surface. When a valve element is mounted in one or more of the flow passages in the valve seat, the indexer comprises a protrusion positioned to engage such valve element and force it out of contact with the valve seat surface. The valve may be actuated by command from the surface by sending telemetry elements to a downhole telemetry data detector.
    • 一种用于井下井服务的阀,具有在流动通道中的阀座表面上承载弹性加载的阀元件的旋转分度器,所述阀元件适于在与其对准时阻塞阀座表面中的一个或多个流动通道。 阀可以附加地或替代地包括安装在阀座表面中的一个或多个流动通道中的弹性加载的阀元件,该阀元件适于在被推压与阀座接触时阻塞其中安装的流动通道 表面。 当阀元件安装在阀座中的一个或多个流动通道中时,分度器包括定位成接合该阀元件并迫使其不与阀座表面接触的突起。 通过将遥测元件发送到井下遥测数据检测器,可以通过来自表面的命令来致动阀。
    • 15. 发明授权
    • Method and apparatus for drilling bore holes under pressure
    • 用于钻孔下的钻孔的方法和装置
    • US5215151A
    • 1993-06-01
    • US766633
    • 1991-09-26
    • Michael L. SmithCharles E. Goodman
    • Michael L. SmithCharles E. Goodman
    • E21B4/02E21B7/06E21B19/22E21B33/068
    • E21B19/22E21B33/068E21B4/02E21B7/068
    • A method and apparatus for directional drilling to recover hydrocarbons, thermal energy, or the like, by using coiled tubing while the well is under pressure so that high density drilling fluids to control the subsurface pressures during drilling are not required. Snubbing apparatus and methods which maintain control of the bore hole pressure throughout the drilling operation are used, thus permitting the use of fresh water as a combination hydraulic fluid to operate a downhole motor and cool the bit, and to flush cuttings from the bore hole. The apparatus uses a down hole assembly including a bit driven by a motor, preferably hydraulic, which is located in a bent housing. A steering tool capable of indicating the angle and azimuth of inclination of the housing is carried by the motor housing and is connected to surface instrumentation by an electrical cable extending through the coiled tubing. The housing and steering tool are coupled to the coiled tubing string by an orientation device which can rotate the bent housing relative to the tubing string through a selected incremental amount so that the bent housing can be oriented in the appropriate direction to drill along the preselected path.
    • 一种用于定向钻井以回收碳氢化合物,热能等的方法和装置,通过在井处于压力下使用连续油管,使得不需要在钻井期间控制地下压力的高密度钻井液。 使用在整个钻孔操作期间保持钻孔压力控制的缓冲装置和方法,因此允许使用淡水作为组合的液压流体来操作井下马达并冷却钻头,并且从钻孔冲洗切屑。 该设备使用井下组件,其包括位于弯曲壳体中的由电机驱动的优选液压的钻头。 能够指示壳体的角度和方位角的转向工具由电动机壳体承载,并通过延伸穿过连续油管的电缆连接到表面仪表。 壳体和转向工具通过定向装置联接到连续油管柱,定向装置可以使弯曲的壳体相对于管柱通过选定的增量来旋转,使得弯曲的壳体可以沿着预定的路径 。
    • 16. 发明申请
    • METHODS AND APPARATUS FOR BALANCING BAND PERFORMANCE
    • 用于平衡带性能的方法和装置
    • US20130155949A1
    • 2013-06-20
    • US13538557
    • 2012-06-29
    • Jeffrey L. Pochop, JR.Michael L. SmithTash Hepting
    • Jeffrey L. Pochop, JR.Michael L. SmithTash Hepting
    • H04B7/04
    • H04B7/0426H01Q1/007H01Q5/40H01Q21/24H01Q21/28H04B7/10
    • An apparatus includes a processor disposed within an enclosure and configured to communicate with multiple wireless devices. A first and a second antenna are disposed within the enclosure. The first antenna is configured to operate within a first band, and the second antenna is configured to operate within a second band. The second band has a center frequency less than a center frequency of the first band. The first antenna is configured to send a signal having a signal strength at a wireless device and associated with the first band, and the second antenna is configured to send a signal having a signal strength at the wireless device and associated with the second band. The signal strength for the signal associated with the first band is greater than the signal strength associated with the second band such that the wireless device selects the first band to communicate with the processor.
    • 一种装置包括设置在机壳内并被配置为与多个无线设备进行通信的处理器。 第一和第二天线设置在外壳内。 第一天线被配置为在第一频带内操作,并且第二天线被配置为在第二频带内操作。 第二频带的中心频率小于第一频带的中心频率。 第一天线被配置为在无线设备处发送具有信号强度并且与第一频带相关联的信号,并且第二天线被配置为在无线设备处发送具有信号强度并且与第二频带相关联的信号。 与第一频带相关联的信号的信号强度大于与第二频带相关联的信号强度,使得无线设备选择第一频带与处理器通信。
    • 17. 发明授权
    • Method and system for scheduling distribution routes and timeslots
    • 调度分配路线和时隙的方法和系统
    • US07251612B1
    • 2007-07-31
    • US09620199
    • 2000-07-20
    • John E. ParkerMichael L. Smith
    • John E. ParkerMichael L. Smith
    • G06Q10/00
    • G06Q10/08G06Q10/06312G06Q10/06316
    • Computer-based methods and systems for dynamically scheduling the distribution of products and services among a system of routes and timeslots are provided. Exemplary embodiments provide a Route and Timeslot Scheduler (the “RTS”), which controls the creation, quantity, and allocation of schedule stops (or events) for each timeslot of each route based upon a calendar and template system. Each route typically represents a geographic area to which products can be delivered. Each timeslot typically represents a window of time, during which delivery stops (or events) can be scheduled. Scheduled stops/events are created based upon defaults which are specified in the template system. A calendar system is provided to specify which routes and timeslots, which would otherwise be available based upon the template system, are actually applicable to be scheduled on a given calendar day. The RTS creates scheduled stops for a designated point.
    • 提供了基于计算机的方法和系统,用于在路由和时隙系统之间动态调度产品和服务的分发。 示例性实施例提供了一种路由和时隙调度器(“RTS”),其基于日历和模板系统控制每个路由的每个时隙的调度停止(或事件)的创建,数量和分配。 每个路线通常表示可以交付产品的地理区域。 每个时隙通常表示一个时间窗口,在此期间可以安排传送停止(或事件)。 基于模板系统中指定的默认值创建计划停止/事件。 提供了日历系统来指定哪些路线和时隙(否则将基于模板系统可用)实际上可应用于在给定的日历日上安排。 RTS为指定点创建预定的停靠点。