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    • 8. 发明公开
    • HIGH-VOLTAGE DETECTOR MONITORING SYSTEM
    • ÜBERWACHUNGSSYSTEMMIT EINEM HOCHSPANNUNGSDETEKTOR
    • EP3052950A4
    • 2017-07-12
    • EP14851393
    • 2014-10-01
    • HD ELECTRIC COMPANY
    • MCNULTY WILLIAM J
    • G01R29/08G01R29/12G08B21/02G08B29/14
    • G01R29/0857G08B21/02
    • A mechanism for providing monitoring of electric field detectors. In accordance with instructions on a machine -readable medium, a computing system receives from a device data corresponding to a user identifier. Further, the computing device identifies from a plurality of electric field detectors one or more electric field detectors associated with the user identifier and identifies status data for each of the identified one or more electric field detectors. The status data for each electric field detector in the plurality of electric field detectors comprises data indicative of at least (i) a location of the electric field detector and (ii) an alarm state of the electric field detector. Additionally, the computing system causes a display component of the device to display a graphical user interface that presents indicia of the status data for each of the identified one or more electric field detectors.
    • 提供电场检测器监测的机制。 根据机器可读介质上的指令,计算系统从设备接收对应于用户标识符的数据。 此外,计算设备从多个电场检测器中识别与用户标识符相关联的一个或多个电场检测器,并识别用于每个所识别的一个或多个电场检测器的状态数据。 多个电场检测器中的每个电场检测器的状态数据包括至少指示(i)电场检测器的位置和(ii)电场检测器的警报状态的数据。 此外,计算系统使设备的显示组件显示图形用户界面,该图形用户界面呈现每个所识别的一个或多个电场检测器的状态数据的标记。
    • 9. 发明公开
    • A DEVICE FOR MEASURING 3D SURFACE POTENTIAL DISTRIBUTION
    • VORRICHTUNG ZUR MESSUNG DER POTENZIELLEN VERTEILUNG UF EINER 3D-OBERFLÄCHE
    • EP3153870A1
    • 2017-04-12
    • EP14893842.6
    • 2014-06-06
    • Toshiba Mitsubishi-Electric Industrial Systems CorporationThe University of Tokyo
    • FURUKAWA, MasaakiUSHIWATA, KodaiYOSHIMITSU, TetsuoTSUBOI, YuichiHIDAKA, KunihikoKUMADA, AkikoIKEDA, Hisatoshi
    • G01R15/24G01R19/00G01R29/12
    • G01R15/242G01R19/00G01R29/14G01R31/34
    • A three-dimensional surface potential distribution measurement apparatus (70) has: a laser light source (13); a Pockels crystal (11); a mirror; a light detector (16); a support structure (31) which supports the aforementioned elements while maintaining a relative positional relationship therebetween; a movement driver which can move the support structure (31) three-dimensionally; a rotary driver (35) which supports the test object (8) and can rotate the test object (8) about an axis extending in a longitudinal direction of the test object (8) ; and a drive controller (37) which controls the movement driver and the rotary driver (35). The drive controller (37) coordinates a driving operation by the movement driver and by the rotary driver (35) while maintaining a gap between the second end face of the Pockels crystal (11) and a surface of the test object (8) at a predetermined value such that the second end face of the Pockels crystal (11) approaches all the surfaces of the electric field relaxation system (3) on the test object (8) .
    • 三维表面电位分布测量装置(70)具有:激光源(13); 普克尔斯晶体(11); 一面镜子; 光检测器(16); 支撑结构(31),其支撑上述元件,同时保持它们之间的相对位置关系; 运动驱动器,其可以三维地移动支撑结构(31); 旋转驱动器(35),其支撑所述测试对象(8)并且可以使测试对象(8)围绕在所述测试对象(8)的纵向方向上延伸的轴线旋转; 以及控制所述移动驱动器和所述旋转驱动器(35)的驱动控制器(37)。 驱动控制器(37)通过运动驱动器和旋转驱动器(35)来协调驱动操作,同时保持在普克尔斯晶体(11)的第二端面与被测试物体(8)的表面之间的间隙 使得普克尔斯晶体(11)的第二端面接近测试对象(8)上的电场弛豫系统(3)的所有表面的预定值。