HAZARD MITIGATION FOR RAILWAY TRACK INTRUSIONS AT TRAIN STATION PLATFORMS
    1.
    发明申请
    HAZARD MITIGATION FOR RAILWAY TRACK INTRUSIONS AT TRAIN STATION PLATFORMS 审中-公开
    在火车站平台上的铁路轨道干扰危险缓解

    公开(公告)号:WO2006112959A2

    公开(公告)日:2006-10-26

    申请号:PCT/US2006/007966

    申请日:2006-03-06

    Inventor: TSAI, John C.

    CPC classification number: B61L23/041 B61L23/00

    Abstract: A hazard mitigation system (10) to detect intrusion by an object (16) into a track zone (12) at a train station platform. A structure is provided that includes a fixed foundation (34) and a surface layer (30) that is cushionably placed above the foundation, such that the structure is located in the track zone. At least one sensor (22) is mounted between the surface layer and the foundation. This sensor senses the weight of the object upon the surface layer and provides a sensor signal representative of that weight. A control unit (402) receives the sensor signal, processes it to determine whether the object represents a potential hazard, and, if so generates a warning signal. The sensor can particularly include a strain gage (22a) or pressure gage (22b), or a fiber optic sensor (22c). When a fiber optic sensor is employed, it can particularly include a fiber Bragg grating (100).

    Abstract translation: 一种危害减轻系统(10),用于检测物体(16)进入火车站平台的轨道区域(12)的入侵。 提供了一种结构,其包括固定基座(34)和缓冲地放置在基座上方的表面层(30),使得该结构位于轨道区域中。 至少一个传感器(22)安装在表面层和基础之间。 该传感器感测物体在表面层上的重量,并提供表示该重量的传感器信号。 控制单元(402)接收传感器信号,处理它以确定对象是否表示潜在危险,并且如果产生警告信号。 传感器可以特别包括应变计(22a)或压力表(22b)或光纤传感器(22c)。 当采用光纤传感器时,它可以特别包括光纤布拉格光栅(100)。

    FIBER OPTIC FLOW METER
    2.
    发明申请
    FIBER OPTIC FLOW METER 审中-公开
    光纤流量计

    公开(公告)号:WO2006074107A1

    公开(公告)日:2006-07-13

    申请号:PCT/US2005/047608

    申请日:2005-12-30

    Inventor: TSAI, John C.

    CPC classification number: G01F1/28 G01F1/661

    Abstract: A metering module (12), or a flow meter (10) employing such, for monitoring fluid flow with a laser light source, a light detector and a processor (14), wherein the fluid (18) may be a gas or liquid. A valve section (22) and a grating section (24) including a fiber Bragg grating (FBG)(28) are provided. The valve section applies strain on the FBG that is representative of the flow of the fluid. An optical fiber (26) couples a probing laser signal (30) to the FBG and the FBG reflects a portion back as a return laser signal (32) that the optical fiber couples to the light detector for detection and processing.

    Abstract translation: 采用这种方式的测量模块(12)或流量计(10)用于利用激光光源,光检测器和处理器(14)监测流体流动,其中流体(18)可以是气体或液体。 提供了包括光纤布拉格光栅(FBG)(28)的阀部分(22)和光栅部分(24)。 阀门部分应用于代表流体流动的FBG上。 光纤(26)将探测激光信号(30)耦合到FBG,并且FBG将部分反射回作为光纤耦合到光检测器进行检测和处理的返回激光信号(32)。

    SYSTEM FOR CREATING AND STORING DIGITAL IMAGES

    公开(公告)号:WO2006076515A3

    公开(公告)日:2006-07-20

    申请号:PCT/US2006/001124

    申请日:2006-01-13

    Applicant: TSAI, John C.

    Inventor: TSAI, John C.

    Abstract: Systems, methods, and products created by the methods that create a photo-magnetic image (102) of an object (112) in photo-magnetic stock (132). A source provides a data signal (118) that is representative of a digital image. The source may particularly include a lens (114) and digital sensor (116) in the manner of a digital camera, or may particularly include an interface (306) to receive the data signal from an external system where it has been captured, stored, or generated. A first coding unit (128, 502) then optically writes the data signal into the photo-magnetic stock and a second coding unit (130) magnetically writes the data signal into the photo-magnetic stock.

    SYSTEM FOR ROTATION MEASUREMENT WITH LASER INTERFEROMETRY

    公开(公告)号:WO2006023345A3

    公开(公告)日:2006-03-02

    申请号:PCT/US2005/028409

    申请日:2005-08-10

    Inventor: TSAI, John C.

    Abstract: An apparatus for use in rotational measurement. A rotational assembly is provided that is rotationally movable about a rotational axis. At least two interferometers are provided that are each able to receive a respective light beam, separate it into both reference and measuring beams and direct their respective measuring beam to and receive it back from the rotational assembly. The said rotational assembly includes a plurality of cube corners mounted so that at least one is able to receive from and reflect back to one of the interferometers its measuring beam as the rotational assembly rotates. The interferometers combine their reference and measuring beams into respective detection beams, wherein at least one such detection beam includes an interference signal that is process able to determine any rotational measurement of the rotational assembly and any work piece target attached to it.

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