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    • 24. 发明授权
    • System and method for determining a state of a door
    • 用于确定门状态的系统和方法
    • US07388467B2
    • 2008-06-17
    • US11274795
    • 2005-11-15
    • Joseph John FisherNick Andrew Van StralenKenneth B. WellesJeffrey Michael AsheJames D. York
    • Joseph John FisherNick Andrew Van StralenKenneth B. WellesJeffrey Michael AsheJames D. York
    • G05B19/00
    • E05B47/02E05B45/086E05B2047/0068G07C9/00103G07C9/00166G07C9/00174G07C9/00571G07C2209/62
    • A system for determining a state of a door having a locking mechanism for locking the door includes a locking mechanism and a door sensor. The locking mechanism sensor is disposed for sensing a condition of the locking mechanism and generating a signal indicative thereof. The door sensor disposed for sensing a condition of the door and generating a signal indicative thereof. The system further includes a processor for determining a state of the door, in response to the signals from the locking mechanism sensor and the door sensor. The state of the door is a secured state when the door sensor senses the condition of the door as closed and the locking mechanism sensor senses the condition of the locking mechanism as locked. A method for determining a state of a door having a locking mechanism for locking the door includes sensing a condition of the locking mechanism and sensing a condition of the door. The method further includes, determining a state of the door as a secured state when the condition of the locking mechanism is sensed as locked and the condition of the door is sensed as closed.
    • 用于确定具有用于锁定门的锁定机构的门的状态的系统包括锁定机构和门传感器。 锁定机构传感器被设置用于感测锁定机构的状态并产生指示其的信号。 门传感器被设置用于感测门的状态并产生指示门的信号。 该系统还包括响应于来自锁定机构传感器和门传感器的信号来确定门的状态的处理器。 当门传感器检测到门的状态为闭合时,门的状态是固定状态,并且锁定机构传感器感测到锁定机构的状态被锁定。 用于确定具有用于锁定门的锁定机构的门的状态的方法包括感测锁定机构的状况并感测门的状况。 该方法还包括:当锁定机构的状态被检测为锁定并且门的状况被感测为关闭时,将门的状态确定为固定状态。
    • 25. 发明授权
    • Method and apparatus for calibrating a remote system which employs coherent signals
    • 用于校准采用相干信号的远程系统的方法和装置
    • US06384781B1
    • 2002-05-07
    • US09843439
    • 2001-04-26
    • Gregory Michael KautzJeffrey Michael AsheSeth David Silverstein
    • Gregory Michael KautzJeffrey Michael AsheSeth David Silverstein
    • H01Q322
    • H01Q3/267
    • A method for calibrating a remote system having a plurality of N elements, N being a positive integer number. An input signal to each of the N elements is processed according to beamforming bits to determine the output of a corresponding element. The output of the plurality of N elements is a composite signal. The method includes the steps of: (a) transmitting a calibration signal to input the plurality of N elements of the remote system; (b) selecting a first set of beamforming bits for each of the plurality of N elements based upon entries of a predetermined invertible matrix; (c) processing the calibration signal at the remote system according to the beamforming bits for each of the N plurality of elements; (d) detecting a reference signal from the remote system and the composite signal transmitted from the N plurality of elements based on the first set of beamforming bits; (e) repeating steps (b)-(d) for successive sets of beamforming bits to generate a set of signals; and (f) processing the set of signals for generating calibration data for each of the N plurality of elements of the remote system. Preferably, the remote system comprises a phased array system and wherein each of the N plurality of elements comprises an individual antenna in the phased array system.
    • 一种用于校准具有多个N个元素的远程系统的方法,N是正整数。 根据波束形成比特来处理对N个元素中的每一个的输入信号,以确定相应元素的输出。 多个N个元素的输出是复合信号。 该方法包括以下步骤:(a)发送校准信号以输入远程系统的多个N个元件; (b)基于预定的可逆矩阵的条目来选择所述多个N个元素中的每一个的第一组波束成形比特; (c)根据所述N个多个元件中的每一个的波束成形位处理所述远程系统处的所述校准信号; (d)基于所述第一组波束形成比特来检测来自所述远程系统的参考信号和从所述N个多个元素发送的所述复合信号; (e)重复步骤(b) - (d),以产生一组信号; 以及(f)处理用于为远程系统的N个多个元素中的每一个生成校准数据的信号集合。 优选地,远程系统包括相控阵列系统,并且其中N个多个元件中的每一个包括相控阵列系统中的单独天线。
    • 28. 发明授权
    • Monitoring system and current transformers for partial discharge detection
    • 用于局部放电检测的监控系统和电流互感器
    • US08674682B2
    • 2014-03-18
    • US12571105
    • 2009-09-30
    • Selaka Bandara BulumullaJeffrey Michael Ashe
    • Selaka Bandara BulumullaJeffrey Michael Ashe
    • G01R15/18
    • G01R31/1272G01R31/008H01F27/2804H01F38/30
    • A high frequency current transformer (HFCT) sensor for detecting partial discharges produced by a component is disclosed. The HFCT sensor includes at least one electrically conductive pattern formed on a substrate, where the substrate comprises multiple segmented regions connected by intermediate regions for folding along multiple fold lines between the segmented regions to form the HFCT sensor. A system for monitoring at least one component of an aircraft wiring system is also disclosed. The monitoring system includes at least one of the HFCT sensors for detecting partial discharges produced by the aircraft wiring system component. The monitoring system further includes a data acquisition system configured to monitoring signals from the HFCT sensor(s).
    • 公开了一种用于检测由部件产生的局部放电的高频电流互感器(HFCT)传感器。 HFCT传感器包括形成在衬底上的至少一个导电图案,其中衬底包括通过中间区域连接的多个分段区域,用于沿着分段区域之间的多个折叠线折叠以形成HFCT传感器。 还公开了一种用于监测飞机布线系统的至少一个部件的系统。 监控系统包括用于检测由飞行器接线系统部件产生的局部放电的HFCT传感器中的至少一个。 监测系统还包括被配置为监测来自HFCT传感器的信号的数据采集系统。