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    • 31. 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。
    • 32. 发明授权
    • Transmitter location for ultra-wideband, transmitted-reference CDMA communication system
    • 用于超宽带,发射参考CDMA通信系统的发射机位置
    • US07269427B2
    • 2007-09-11
    • US09973140
    • 2001-10-09
    • Ralph Thomas HoctorJohn Erik HersheyNick Andrew Van StralenHarold Woodruff Tomlinson, Jr.
    • Ralph Thomas HoctorJohn Erik HersheyNick Andrew Van StralenHarold Woodruff Tomlinson, Jr.
    • H04Q7/20H04M11/04H04B7/00H04B7/08H04B17/00G01S13/08
    • H04B1/7163G01S5/06
    • A system and method involve tracking the location of objects within an area of interest using transmitted-reference ultra-wideband (TR-UWB) signals. The system includes at least three base stations communicating with a central processor, at least one mobile device and at least one fixed beacon transmitter of known location. The mobile device is equipped with a transmitter for transmitting a TR-UWB signal to a base station, which then determines a location of the mobile device based on time difference of arrival information between the beacon transmitters and mobile devices measured at all the base stations. Preferably, the area of interest includes a plurality of mobile devices each transmitting a delay-hopped TR-UWB signal according to a code-division multiple access scheme. The mobile devices may be attached to a patient and/or a medical asset within the hospital for tracking purposes. Additionally, patient medical information may be transmitted with the TR-UWB signals to allow patient monitoring to occur simultaneously with asset/patient tracking.
    • 一种系统和方法包括使用发射参考超宽带(TR-UWB)信号来跟踪感兴趣区域内的物体的位置。 该系统包括与中央处理器,至少一个移动设备和已知位置的至少一个固定信标发射机通信的至少三个基站。 移动设备配备有用于向基站发送TR-UWB信号的发射机,其基于在所有基站测量的信标发射机和移动设备之间的到达信息的时间差确定移动设备的位置。 优选地,感兴趣区域包括多个移动设备,每个移动设备根据码分多址方案发送延迟跳跃的TR-UWB信号。 移动设备可以附接到医院内的患者和/或医疗资产以用于跟踪目的。 另外,可以用TR-UWB信号发送患者医疗信息,以便患者监视与资产/患者跟踪同时发生。
    • 37. 发明申请
    • TDMA WIRELESS COMMUNICATIONS SYSTEM AND RELATED METHODS
    • TDMA无线通信系统及相关方法
    • US20130265933A1
    • 2013-10-10
    • US13441195
    • 2012-04-06
    • Nelson H. Powell IIINick Andrew Van Stralen
    • Nelson H. Powell IIINick Andrew Van Stralen
    • H04J3/06
    • H04W56/0015
    • A wireless communications system may include wireless communications devices communicating with one another via time division multiple access (TDMA). The wireless communications devices may include a time master device that may transmit a first synchronization message, a first maintenance message, and a timing head relay designation message. The wireless communications devices also include a timing head relay device corresponding to the timing head relay designation and may receive the first synchronization message, first maintenance message and timing head relay designation message. The timing head relay device may also transmit a second synchronization message and a second maintenance message. The wireless communications devices may also include a time forwarding device that may receive the second synchronization message and the second maintenance message, transmit a third synchronization message when a downstream wireless communications device is outside a range of the timing head relay device, and transmit a third maintenance message.
    • 无线通信系统可以包括经由时分多址(TDMA)彼此通信的无线通信设备。 无线通信设备可以包括可以发送第一同步消息,第一维护消息和定时头中继指定消息的时间主设备。 无线通信设备还包括对应于定时头中继指定的定时头中继设备,并且可以接收第一同步消息,第一维护消息和定时头中继指定消息。 定时头中继装置还可以发送第二同步消息和第二维护消息。 无线通信设备还可以包括可以接收第二同步消息和第二维护消息的时间转发设备,当下游无线通信设备在定时头中继设备的范围之外时,发送第三同步消息,并且发送第三同步消息 维护信息。
    • 40. 发明授权
    • Shared memory control between detector framing node and processor
    • 检测器成帧节点和处理器之间的共享内存控制
    • US06753873B2
    • 2004-06-22
    • US09774554
    • 2001-01-31
    • Walter Vincent DixonNick Andrew Van StralenEdward James Nieters
    • Walter Vincent DixonNick Andrew Van StralenEdward James Nieters
    • G06F15167
    • A61B6/56A61B6/541G01N23/046G01N2223/419G01N2223/612H04N5/32
    • An imaging system shares control of host memory between a detector framing node and a host processor. The detector framing node is programmable to control generation and reception of image data. Image data is acquired and communicated to host memory independently from control by a host operating system. The detector framing node controls events according to an event instruction sequence and communicates received image data to the host memory through a computer communication bus. Image data is received by the detector framing node from a flat panel detector. Host memory has a first section managed by the host operating system and a second section not managed by the host operating system. Image data is communicated from the detector framing node into the second section of host memory. Event instruction sequences are communicated from the first section of host memory to the detector framing node to control the generation and reception of image data.
    • 成像系统共享检测器成帧节点和主机处理器之间的主机存储器的控制。 检测器成帧节点是可编程的,用于控制图像数据的生成和接收。 获取图像数据并将其与主机操作系统的控制独立地传送到主机存储器。 检测器成帧节点根据事件指令序列控制事件,并通过计算机通信总线将接收的图像数据传送到主机存储器。 图像数据由检测器框架节点从平板检测器接收。 主机内存具有由主机操作系统管理的第一部分和不由主机操作系统管理的第二部分。 图像数据从检测器成帧节点传送到主机存储器的第二部分。 事件指令序列从主机存储器的第一部分传送到检测器成帧节点,以控制图像数据的生成和接收。