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    • 2. 发明申请
    • Number label embedded with antenna tag for measuring race runner's time records via wireless identification, and runners' time records measurement method and system using the same
    • US20040006445A1
    • 2004-01-08
    • US10259824
    • 2002-09-30
    • Min-ho Paek
    • G04F001/00G04F003/00G04F005/00G04G005/00G04G007/00G04F007/00G04F008/00G04F010/00G06F015/00G04G015/00G06F017/40
    • G04F8/08G04F10/00
    • A number label embedded with an antenna tag for measuring a runner's time record using wireless identification (ID) at a recording race such as a marathon or walking race, and a runner's recording measurement method and system using the same are provided. There was a number label having a bar code in the past. However, if a bar code is screened by the body of a person who is attached with a bar code number label or the other user's body when a bar code reader or bar code scanner recognizes the bar code number label, the bar code may not be decoded. To solve this defect of the bar code wireless identification, there has been a technology of measuring and managing runners' IDs and time records, in which an antenna tag having a predetermined ID is attached to runners' bodies, respectively, for example, a radio frequency (RF) chip is attached to each runner's body, and then the antenna tag communicates with an antenna array to thus perform a wireless identification. In the case of the RF tag technology, race runners should attach both an antenna tag and a number label, respectively. Accordingly, to remove the cumbersome burden attaching both the antenna tag and the number label, a number label embedded with an antenna tag is provided. For this purpose, when a race runner's number label is made according to a predetermined standard, an antenna tag having an antenna coil and an electronic tag is embedded and integrated in the number label, in which the number label has a space where a race runner's number is printed. A race runner's time record is measured through a wireless ID identification process between the antenna tag embedded number label and an antenna array. Here, since the number label is usually attached on the chest and back of the race runner, the antenna array may be preferably installed over the head of the race runner in the form of a goal-post or an iron-bar. Also, it is preferable to use a step-board shaped antenna array together with a goal-post shaped antenna array for small race runners. Accordingly, a database for IDs and time records of race runners is made up in an integrated database management host computer, in order to manage the IDs and the time records. As a result, race runners' time records can be efficiently and accurately measured in time at a race where a multitude of race runners participate. Also, since race runners need not safekeep and attach antenna tags in addition to number labels, respectively, but have only to attach the antenna tags on the bodies, burdens of race runners are reduced and a manufacturing cost for the number labels and the antenna tags of sponsors is saved.
    • 9. 发明申请
    • Infrared timing meter system
    • 红外定时计系统
    • US20020111768A1
    • 2002-08-15
    • US09726936
    • 2000-11-30
    • Sleiman R. GhorayebJoseph L. DiBiasi
    • G04F001/00G04F003/00G04F005/00G04G005/00G04G007/00G04F007/00G04F008/00G04F010/00G06F015/00G04G015/00
    • G07B15/02
    • An electronic timing meter device that can receive an infrared (nullIRnull) communication signal from a remote control device operated, for example, by a vehicle owner. This IR remote device transmits information about the user and contains an identification code that is specific to that user. The identification code and possibly other user information is received by the timing meter device and stored in the computer memory of the timing meter device. Upon receipt of the code and other information from the user, the electronic timing meter device starts the counter to record the length of time the user is parked. The length of time the user is parked is determined by the receipt of another signal from the user to stop the meter's counting, upon the passage of a predetermined maximum amount of time, upon receipt of a signal received from a new user's device once the old user leaves the parking location or in response to a signal from the motion or proximity detector that the user's vehicle has left the parking location monitored by the timing meter device. The recorded information is then used to deduct money from each user's account, thus avoiding the need to deposit and collect physical change, as in mechanical parking meters.
    • 一种电子计时装置,其可以从例如由车主所操作的遥控装置接收红外(“IR”)通信信号。 该IR远程设备发送关于用户的信息,并且包含特定于该用户的识别码。 识别码和可能的其他用户信息由定时计装置接收并存储在定时计装置的计算机存储器中。 在接收到用户的代码和其他信息时,电子计时器装置启动计数器以记录用户停放的时间长度。 用户停放的时间长度由接收来自用户的另一个信号确定,以便在接收到从新用户设备接收到的信号之后,在经过预定的最大时间量之后停止计时器的计数。 用户离开停车位置或响应于来自运动或接近检测器的信号,用户的车辆已经离开由定时计装置监控的停车位置。 记录的信息然后用于从每个用户的帐户中扣除金额,从而避免存储和收集物理变化的需要,如在机械停车收费表中。
    • 10. 发明申请
    • Computing performance thresholds based on variations in network traffic patterns
    • 根据网络流量模式的变化计算性能阈值
    • US20040098223A1
    • 2004-05-20
    • US10703007
    • 2003-11-06
    • Jeff Conrad
    • G04F001/00G04F003/00G04F005/00G04G005/00G04G007/00G04F007/00G04F008/00G04F010/00G06F015/00G04G015/00
    • H04L43/16H04L41/5009
    • An exemplary embodiment of a system for a time-bucketing data collection module is disclosed. The time-bucketing data collection module may be configured to retrieve information from remote network devices and to collate (or sort) the retrieved information into time interval bins (or time-buckets) to assist in the maintenance of a network. The sorted information is then utilized by a threshold calculation module of the time bucketing data collection module to calculate a baseline value, defining a normal operating range for a performance parameter, for the time interval. Subsequently, the calculated baseline value is used to calculate a revised threshold value by the threshold calculation module. The revised threshold value is then forwarded to a threshold comparator configured to compare incoming information (or data point values) with the updated thresholds. If the incoming information exceeds an updated threshold, an alarm is generated by an alarm module of the time-bucketing data collection module. The time-bucketing data collection module may be further configured to perform the calculation of the baseline value and/or threshold in response to receiving an incoming information (or data point value). Alternatively, the calculations may be made on a periodic basis set by a user.
    • 公开了一种用于时间压缩数据采集模块的系统的示例性实施例。 时间收敛数据收集模块可以被配置为从远程网络设备检索信息并将检索到的信息整理(或排序)到时间间隔区间(或时间段)中以帮助维护网络。 然后,排序的信息由时间竞争数据收集模块的阈值计算模块用于计算在时间间隔内为性能参数定义正常操作范围的基准值。 随后,计算的基线值用于通过阈值计算模块计算修正的阈值。 修改的阈值然后被转发到阈值比较器,该阈值比较器被配置为将输入信息(或数据点值)与更新的阈值进行比较。 如果输入的信息超过更新的阈值,则由时间衰减数据收集模块的报警模块产生报警。 时间收敛数据收集模块还可以被配置为响应于接收到输入信息(或数据点值)而执行基线值和/或阈值的计算。 或者,可以由用户设置的周期性基础进行计算。