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    • 2. 发明授权
    • Intelligent auxiliary power supply system with current and temperature monitoring capabilities
    • 智能辅助电源系统具有电流和温度监控功能
    • US07720576B2
    • 2010-05-18
    • US11943721
    • 2007-11-21
    • Donald WarrenJohn Smith
    • Donald WarrenJohn Smith
    • G05D3/12G05D5/00G05D9/00G05D11/00G05D17/00G05B9/02G06F1/26G06F1/32H02P27/00G08B1/00
    • H02J9/06Y10T307/344Y10T307/391Y10T307/615Y10T307/62
    • An intelligent auxiliary power supply system for supplying power to a load such as a furnace or air handler using a rechargeable power source. An intelligent controller determines appropriate periods for switching to auxiliary power, thus allowing the user to realize increased energy related cost savings. A plurality of sensors including a current transducer, an indoor and outdoor temperature sensor, and a clock transmit information to the intelligent controller. Implementing user configured algorithms, the intelligent controller continuously compares information transmitted from said sensors and said load, to information inputted by the user via an electronic device to determine the appropriate power configuration. A remote electronic device may also be connected to the system, allowing the user to control the system while not in close proximity to said system and also allowing the user's energy provider to send requests to switch to auxiliary power.
    • 一种智能辅助电源系统,用于使用可充电电源向诸如炉子或空气处理器的负载供电。 智能控制器确定切换到辅助电源的适当周期,从而允许用户实现增加的能源相关成本节省。 多个传感器,包括电流传感器,室内和室外温度传感器,以及时钟发送信息到智能控制器。 实施用户配置的算法,智能控制器将从所述传感器发送的信息和所述负载连续地比较由用户通过电子设备输入的信息,以确定适当的功率配置。 远程电子设备也可以连接到系统,允许用户在不与所述系统非常接近的情况下控制系统,并且还允许用户的能量提供者发送切换到辅助电源的请求。
    • 3. 发明授权
    • Control algorithm for backup power system
    • 备用电源系统控制算法
    • US07389159B2
    • 2008-06-17
    • US11371751
    • 2006-03-09
    • Donald WarrenJohn Smith
    • Donald WarrenJohn Smith
    • G06F19/00G05D23/00G05D11/00
    • G05D23/1924
    • A method for controlling fossil fuel fired heating systems according to an improved adaptive cyclical control method when operating on backup (auxiliary DC) electrical power. Battery life is prolonged when used in conjunction with such improved method. Operating characteristics of the heating equipment and home or building being heated are monitored and stored in electronic memory during normal periods of operation when grid power is available. These characteristics are used to create control algorithms that are in turn specific to the system, as defined by the heating equipment and conditioned space. When the grid power is lost the control algorithms select the optimal heating mode, determine optimal cycle duration, and estimate the time to exhaustion of the remaining backup power.Operation is divided into sequential modes. When a prolonged low voltage period is detected, the backup power control initiates a short-term preliminary energy conservation mode. As the outage persists, the control transitions to intermediate and long-term energy conservation modes until the backup power is exhausted or grid power is restored.
    • 根据备用(辅助DC)电力运行时的改进的自适应循环控制方法,控制化石燃料燃烧加热系统的方法。 当与这种改进的方法结合使用时,电池寿命延长。 供电设备和被加热的家庭或建筑物的运行特性在电力可用时的正常运行期间被监控并存储在电子存储器中。 这些特征用于创建控制算法,这些控制算法又依赖于由加热设备和空调空间定义的系统特定的控制算法。 当电网电源丢失时,控制算法选择最佳加热模式,确定最佳循环持续时间,并估计耗尽剩余备用电源的时间。 操作分为顺序模式。 当检测到长时间的低电压周期时,备用电源控制启动短期的初步节能模式。 随着停电仍然存在,控制转变为中期和长期节能模式,直到备用电力耗尽或电网电力恢复。
    • 9. 发明授权
    • Apparatus and system for monitoring and managing traffic flow
    • 用于监控和管理交通流的装置和系统
    • US09224293B2
    • 2015-12-29
    • US14158797
    • 2014-01-18
    • Donald Warren Taylor
    • Donald Warren Taylor
    • G08G1/08G08G1/01
    • G08G1/08G08G1/0112G08G1/0116G08G1/0145
    • An apparatus and system for monitoring and managing traffic flow. The system includes a plurality of remote sensor devices arranged in a plurality of vehicles, a plurality of remote communication hub devices operatively arranged along one or more roadways and in communication with the plurality of remote sensor devices, a central server, a network interface in communication with the central server and the plurality of remote communication hub devices over a network, and a shared database in communication with the central server. The central server is configured to receive traffic data from the plurality of remote sensor devices over the network, update traffic data in the shared database, periodically calculate an optimal traffic flow for one or more of vehicles traveling along the one or more roadways based on the updated traffic data, and transmit timing adjustments over the network to one or more traffic light intersections based on the optimal traffic flow calculations. The network interface is configured to send and receive traffic data. The traffic data includes vehicle location information and network traffic congestion information.
    • 一种用于监控和管理交通流量的设备和系统。 该系统包括布置在多个车辆中的多个远程传感器装置,沿着一个或多个道路可操作地布置并与多个远程传感器装置通信的多个远程通信集线器装置,中央服务器,通信网络接口 与中央服务器和多个远程通信集线器设备通过网络,以及与中央服务器通信的共享数据库。 中央服务器被配置为通过网络从多个远程传感器设备接收交通数据,更新共享数据库中的交通数据,周期性地计算一条或多条沿着一条或多条道路行驶的车辆的最佳交通流量,基于 更新的交通数据,以及基于最佳交通流量计算,将网络上的定时调整发送到一个或多个交通灯交叉点。 网络接口配置为发送和接收流量数据。 交通数据包括车辆位置信息和网络交通拥堵信息。
    • 10. 发明申请
    • PORTABLE AIR PUMP APPARATUS AND METHOD
    • 便携式空气泵装置和方法
    • US20140216562A1
    • 2014-08-07
    • US13757787
    • 2013-02-02
    • Donald Warren Taylor
    • Donald Warren Taylor
    • F04B39/12
    • F04B33/005Y10T137/0402Y10T137/3724
    • A portable air pump apparatus and method that includes an elongated elongated cylinder portion having a first air channel for transporting compressed air, and an air discharge portion having a connection head, a finger or thumb grip portion, a rotatable thumb-lock lever, and a second air channel extending vertically therethrough the air discharge portion and engagable with an inflation valve of an inflatable object. The second air channel is in communication with the first air channel of the elongated cylinder portion. The rotatable thumb-lock may be rotated within a predetermined range of movement defined substantially by a non-engaged position and an engaged position. The portable air pump is configured such that a user may grasp the air discharge portion with a single hand using the finger or thumb grip portion to place the connection head over an inflation valve of the inflatable object and to use one or more fingers to move the rotatable thumb-lock lever from the non-engaged position to the engaged position, thereby enabling air to flow into the inflatable object from the air pump apparatus without significant air loss.
    • 一种便携式空气泵装置和方法,其包括具有用于输送压缩空气的第一空气通道的细长细长圆筒部分和具有连接头,手指或拇指握持部分,可旋转拇指锁定杆和 第二空气通道垂直地延伸穿过空气排放部分并且可与可膨胀物体的充气阀接合。 第二空气通道与细长气缸部分的第一空气通道连通。 可旋转的拇指锁可以在基本上由非接合位置和接合位置限定的预定运动范围内旋转。 便携式空气泵被构造成使得用户可以使用手指或拇指把手部分用单手握住排气部分,以将连接头放置在可充气物体的充气阀上,并且使用一个或多个手指来移动 可旋转的拇指锁定杆从非接合位置到接合位置,从而使得空气从空气泵装置流入可充气物体中,而没有显着的空气损失。