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    • 4. 发明申请
    • 온라인 전기회로 정수 측정에 의한 전력설비 상태감시 시스템 및 방법
    • 通过测量在线电路参数监测动力装置状态的系统和方法
    • WO2013042925A1
    • 2013-03-28
    • PCT/KR2012/007475
    • 2012-09-19
    • 주식회사 유성계전김일동
    • 김일동이진락
    • G01R31/08G01R27/04G01R27/32
    • G01R31/2836G01R19/2513H02J13/0062Y02E60/7838Y04S40/124
    • 본 발명은 운전중인 전력설비의 선로정수를 온라인으로 측정함에 의한 전력설비 상태감시 시스템 및 방법에 관한 것으로, 본 발명에 따른 전력설비 상태감시 시스템은 외부입력에 따라 측정시간 설정 및 측정대상설비를 선택하고, 그 선택된 측정대상설비에서 계측된 전류 및 전압 데이터를 입력 받으며, 상기 입력된 전류 및 전압 데이터에 태깅된 시간정보를 참조하여 상기 설정된 측정시간에 동시 측정된 전류 및 전압 데이터를 추출하고, 상기 추출된 전류 및 전압 데이터로부터 영상분을 제거하며 상기 영상분이 제거된 전류 및 전압 데이터를 이용하여 상기 선택된 측정대상에 대한 선로정수를 산출하고, 상기 산출된 선로정수의 크기나 증감율이 기설정된 기준값을 벗어나는지 여부에 따라 고장 및 각종 접속상태를 포함한 설비의 전기적 상태를 판단하여 알람, 상태 알림 메세지 또는 트립신호를 출력하여 상기 측정대상설비의 상태를 감시제어 한다.
    • 本发明涉及一种通过在线测量正在运行的电力设施的线路参数和根据本发明的用于监视电力设施的系统来监视电力设施的系统和方法,其设置测量时间 并根据外部输入选择要测量的设施,接收从待测设施测量的电流和电压数据,通过参考时间信息提取在设定的测量时间同时测量的电流和电压数据 其被输入的电流和电压数据被标记,从电流和电压数据中去除图像,输出相对于通过使用去除图像的电流和电压数据选择的要测量的设备的线路参数 根据尺寸或尺寸确定设备的电气状态,包括故障和各种连接状态 输出的线路参数的增减速度超过规定的标准值,输出状态通知信息或跳闸信号,由此监视/控制被测设备的状态。
    • 7. 发明申请
    • RADIATION MONITORING OF BODY PART SIZING AND USE OF SUCH SIZING FOR PERSON MONITORING
    • 身体部位尺寸的辐射监测和用于人员监测的这种尺寸的使用
    • WO2005122061A3
    • 2006-12-21
    • PCT/US2005004329
    • 2005-02-11
    • CELUNET INCBAILEY KENNETH SBARRERA FERNANDO A
    • BAILEY KENNETH SBARRERA FERNANDO A
    • G06K9/00G01R27/04G06K9/20
    • G06K9/209
    • A person monitoring system that may determine personal characteristics and compare them to other characteristics without necessarily recognizing a specific individual corresponding to those characteristics. An embodiment may use a first array of focused microwave transmitting antennas driven by a microwave transmitting electronics, producing microwave signals for the first array. A second array of focused microwave receiving antennas may have each antenna of said second array being focused and pointed to receive a microwave transmission from a specific antenna of the first array. A controller determines pixels of the sillouette of the monitored subject, as pixels from the microwave antennas. Parameters of human body shape are determined, and used as a profile that can be monitored.
    • 个人监控系统可以确定个人特征并将其与其他特征进行比较,而不必识别与这些特征相对应的特定个体。 一个实施例可以使用由微波发射电子器件驱动的聚焦微波发射天线的第一阵列,产生用于第一阵列的微波信号。 聚焦微波接收天线的第二阵列可以使所述第二阵列的每个天线被聚焦并指向从第一阵列的特定天线接收微波传输。 控制器将被监测对象的硅胶的像素确定为来自微波天线的像素。 确定人体形状的参数,并将其用作可以监测的轮廓。
    • 9. 发明申请
    • PRECIPITATION EFFECTS MITIGATION AT ANTENNAE SYSTEMS
    • 降解效应在天线系统中减缓
    • WO2005081755A3
    • 2006-08-24
    • PCT/US2005001757
    • 2005-01-21
    • RADIOMETRICS CORPWARE RANDOLPHSOLHEIM FREDRICKEXNER MICHAEL
    • WARE RANDOLPHSOLHEIM FREDRICKEXNER MICHAEL
    • G01N7/00G01D11/24G01R27/04G01R27/32
    • G01D11/24
    • Apparatus and methods for mitigating precipitation effects realized at an antenna system of an instrument such as a microwave radiometer are disclosed. One embodiment of the apparatus includes a blower mechanism (81) that enables instrument operation even during precipitation events (rain, snow, sleet, or excessive condensation) by causing a flow of air at relatively high velocity tangentially across the antenna system. The air flow is of sufficient force to disallow contact by hydrometeors with the antenna or antenna window (25) of the system by redirecting the path of the falling hydrometeors in flight and/or to sweep hydrometeors reaching or formed at the window from the vicinity of the window. Other mechanisms for such precipitation effects mitigation are also disclosed.
    • 公开了一种用于减轻诸如微波辐射计的仪器的天线系统实现的降水效应的装置和方法。 该装置的一个实施例包括鼓风机构(81),其通过使相对较高速度的空气相对于天线系统切向地流动,使得即使在降水事件(雨,雪,雨夹雪或过度冷凝)期间的仪器操作。 空气流动具有足够的力量,通过重新定位飞行中的下降的水合物的路径和/或从喷雾器附近的窗口处到达或形成的水蒸气,不允许水化物与系统的天线或天线窗口(25)接触。 窗户。 还公开了这种降水效应缓解的其他机制。
    • 10. 发明申请
    • METHOD OF ESTIMATING CHANNEL BANDWIDTH FROM A TIME DOMAIN REFLECTOMETER (TDR) MEASUREMENT
    • 估计来自时域反射计(TDR)测量的通道带宽的方法
    • WO2006083855A2
    • 2006-08-10
    • PCT/US2006/003385
    • 2006-01-30
    • FORMFACTOR, INC.MILLER, Charles, A.TSENG, Jim, Chih-chiang
    • MILLER, Charles, A.TSENG, Jim, Chih-chiang
    • G01R27/04
    • G01R27/04
    • Bandwidth of a test channel is determined from a single port Time Domain Reflectometer (TDR) measurement with the channel terminated in a short or an open circuit. Bandwidth is estimated by: (1) making a TDR measurement of a channel terminated in a short or open circuit; (2) determining a maximum slope of the reflection from the TDR measurement; (2) calculating an interpolated rise or fall time, for example by taking 80% of the applied voltage between the 10% and 90% points, and then dividing the applied voltage by the maximum slope determined; (3) dividing the overall interpolated rise time by the square root of two to account for the TDR signal proceeding through the channel twice; (4) removing the contribution of rise time from measurement equipment; and (5) completing calculation of channel bandwidth using a formula to relate bandwidth to rise time, such as: bandwidth = .35/rise time.
    • 测试通道的带宽由单端口时域反射计(TDR)测量确定,通道以短路或开路端接。 带宽通过以下方式估计:(1)使TDR测量在短路或开路中终止; (2)从TDR测量确定反射的最大斜率; (2)例如通过将所施加的电压的80%乘以10%和90%之间的点来计算内插的上升或下降时间,然后将所施加的电压除以所确定的最大斜率; (3)将整体内插上升时间除以二的平方根以考虑通过信道进行的TDR信号两次; (4)消除测量设备上升时间的贡献; 和(5)使用公式来完成信道带宽的计算,以将带宽与上升时间相关联,例如:带宽= .35 /上升时间。