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    • 71. 发明授权
    • Methods and apparatuses for indicating the location of water flowing in a field
    • 用于指示在场中流动的水的位置的方法和装置
    • US08471716B2
    • 2013-06-25
    • US12950119
    • 2010-11-19
    • Michael Hansen
    • Michael Hansen
    • G08B21/00
    • G08B5/36G08B21/10Y02A50/12
    • Signaling methods and apparatuses are described for preventing flood irrigation water from overflowing in a trench, field, or other area. Signaling devices may include indicators such as a reflector, a flag, a light, or a sound device provided on an end of an elongate member having its opposite end engaged with the ground. A stake is driven into the ground near the elongate member in the trench or other area where water will flow. A breakaway link such as a strip of paper is engaged to either the indicator or the elongate member and also to the stake, causing the elongate member to be bent downward, with the breakaway link located in the trench where water will flow. When exposed to the flow of water, the breakaway link weakens and eventually tears such that the elongate member springs upward carrying the indicator with it, signaling an operator that water has reached that location in the trench.
    • 描述了用于防止洪水灌溉水在沟槽,场地或其他区域溢出的信号方法和装置。 信号装置可以包括指示器,例如设置在其相对端与地面接合的细长构件的端部上的反射器,标志,光或声音装置。 在沟槽或水将流动的其他区域中的细长构件附近的地块被驱动进入地面。 诸如一条纸之类的分离连接件与指示器或细长构件接合,并且还连接到桩上,导致细长构件向下弯曲,分离连杆位于水将流动的沟槽中。 当暴露于水流时,分离连杆变弱并最终撕裂,使得细长构件向上弹起携带指示器,指示操作者水已经到达沟槽中的该位置。
    • 72. 发明申请
    • REMOTE HEALTH MONITORING SYSTEM
    • 远程健康监测系统
    • US20120265029A1
    • 2012-10-18
    • US13446490
    • 2012-04-13
    • Michael Fahey
    • Michael Fahey
    • A61B5/00
    • G08B21/10A61B5/0006A61B5/0205A61B5/08A61B5/14552G06F19/00G06F19/3418Y02A90/26
    • A data collection system collects and stores physiological data from an ambulatory patient at a high resolution and/or a high data rate (“more detailed data”) and sends a low-resolution and/or downsampled version of the data (“less detailed data”) to a remote server via a wireless network. The server automatically analyzes the less detailed data to detect an anomaly, such as an arrhythmia. A two-tiered analysis scheme is used, where the first tier is more sensitive and less specific than the second tier. If the more sensitive analysis detects or suspects the anomaly, the server signals the data collector to send more detailed data that corresponds to a time period associated with the anomaly. The more specific second tier analyses the more detailed data to verify the anomaly. The server may also store the received data and make it available to a user, such as via a graphical or tabular display.
    • 数据收集系统以高分辨率和/或高数据速率(更详细的数据)收集和存储来自流动患者的生理数据,并将数据的低分辨率和/或低采样版本(较不详细的数据)发送到 远程服务器通过无线网络。 服务器自动分析较不详细的数据来检测异常,如心律失常。 使用两层分析方案,其中第一层比第二层更敏感,不太具体。 如果更敏感的分析检测到或怀疑异常,则服务器发信号通知数据收集器发送与异常相关的时间段对应的更详细的数据。 更具体的第二层分析更详细的数据来验证异常。 服务器还可以存储接收到的数据并使其可用于用户,例如通过图形或表格显示。
    • 74. 发明申请
    • Systems for Detecting, Collecting, Communicating, and Using Information About Environmental Conditions and Occurrences
    • 检测,收集,沟通和使用有关环境条件和发生情况的信息系统
    • US20120112901A1
    • 2012-05-10
    • US12942449
    • 2010-11-09
    • Stephen J. Chasko
    • Stephen J. Chasko
    • G08B23/00
    • H04L67/12G08B21/10G08B25/009Y02A50/12
    • Systems and methods are disclosed for identifying and providing warnings of tornadoes, hurricanes, earthquakes, and other environmental occurrences. Temperature, pressure, seismic activities and other environmental conditions are measured with improved granularity using sensors at multiple locations. More extensive distribution of sensors is enabled using existing networks, such as utility (e.g., gas and electricity) meter networks. Network traffic is improved by screening information locally so that only limited information is sent for central processing. A given location, for example, may compare its own and its neighbors measurements against a profile to identify the probable existence of a tornado before sending a message to a central processing device. Upon receiving such a message and possibly other information (e.g., other messages or weather service information), a central device may send notifications to specific facilities that an environmental occurrence may be occurring, for example, notifying specific residences in the expected path of a tornado.
    • 公开了系统和方法,用于识别和提供龙卷风,飓风,地震和其他环境事件的警告。 温度,压力,地震活动和其他环境条件是使用传感器在多个位置使用改进的粒度来测量的。 使用现有网络(例如公用事业(例如,天然气和电力)计量网络)来实现更广泛的传感器分布。 通过本地筛选信息来提高网络流量,从而仅发送有限的信息用于中央处理。 例如,给定位置可以将其自己的和其邻近的测量值与简档进行比较,以在向中央处理设备发送消息之前识别龙卷风的可能存在。 在接收到这样的消息和可能的其他信息(例如,其他消息或气象服务信息)时,中央设备可以向特定设施发送可能发生环境发生的通知,例如,通知在龙卷风的预期路径中的特定住宅 。
    • 75. 发明授权
    • Expert system assistance for persons in danger
    • 为危及人员提供专家系统援助
    • US08044772B1
    • 2011-10-25
    • US12176149
    • 2008-07-18
    • Kevin Roe
    • Kevin Roe
    • G08B5/22G08B23/00H04Q1/30
    • B60K28/06B60W2540/24G08B7/066G08B21/04G08B21/10G08B21/12G08B21/22
    • Methods and systems using one or more expert systems to quickly assist (e.g., advise and/or rescue) persons in danger at a location (e.g., buildings, tunnels, bridges, factories, refineries, recreational areas, such as parks, golf courses, ski-slopes, public transportation vehicles, such as buses, subways, trains, planes, ships, and equivalents), to screen and selectively test the location and/or person and assist the person if danger to the person is determined. One embodiment is a method to advise a person in danger, possibly having an impairment, using one or more expert systems. A second embodiment is a method to assist people in danger, possibly having an impairment, such as chemical impairment, physical impairment, medical impairment, or emotional impairment, using one or more expert systems. A third embodiment is a system to assist a person, if the system determines a danger at a location and/or if the system determines if a person has an impairment, such as chemical impairment, physical impairment, medical impairment, or emotional impairment, using one or more expert systems.
    • 使用一个或多个专家系统的方法和系统能够在某个地点(例如,建筑物,隧道,桥梁,工厂,炼油厂,娱乐区域,如公园,高尔夫球场,高尔夫球场等)中快速协助(例如,建议和/或救援) 如公共汽车,地铁,火车,飞机,船舶和等同物的公共交通工具车辆),筛选和选择性地测试位置和/或人员,并且如果确定对人的危险,则协助该人。 一个实施例是使用一个或多个专家系统来告知危险的人,可能有损害的方法。 第二实施例是使用一个或多个专家系统来帮助危险的人,可能具有诸如化学损伤,身体损伤,医疗损伤或情绪障碍的损伤的方法。 第三个实施例是一个系统来帮助一个人,如果系统确定某个地点的危险,和/或如果该系统确定一个人是否具有减值,如化学损伤,身体损伤,医疗损伤或情绪障碍,使用 一个或多个专家系统。
    • 77. 发明申请
    • WIRELESS EARTHQUAKE ALARM BASED ON MEMS ACCELEROMETERS
    • 基于MEMS加速度计的无线地震报警
    • US20110037588A1
    • 2011-02-17
    • US12707496
    • 2010-02-17
    • Tao ZENGBing ZhangHuayin ZhengJiauzhang Deng
    • Tao ZENGBing ZhangHuayin ZhengJiauzhang Deng
    • G08B21/00G08B1/08
    • G08B21/10G01V1/008G08B27/005
    • The disclosure relates to detecting seismic movements and providing at least one alarm notification based on the detected seismic movement. Particularly, a sensor device, which may be positioned in a subterranean part of a structure, may detect a seismic movement. The sensor device may make a determination as to whether the received seismic movement is greater than a predetermined threshold. If the seismic movement is greater than a predetermined threshold, the sensor device may transmit an alarm notification to one or more alarm devices, which may be located within the structure, indicating the seismic movement. The alarm device(s) may provide an alarm, notifying people in the structure of the seismic movement. This may provide an opportunity for the people to leave the structure before the seismic movement reaches the structure.
    • 本公开涉及检测地震运动并且基于检测到的地震运动提供至少一个报警通知。 特别地,可以定位在结构的地下部分中的传感器装置可以检测地震运动。 传感器装置可以确定接收到的地震运动是否大于预定阈值。 如果地震运动大于预定阈值,则传感器装置可以向可能位于结构内的一个或多个报警装置发送警报通知,指示地震运动。 报警装置可以提供报警,通知人们地震运动的结构。 这可能为人们在地震运动到达结构之前离开结构提供了机会。