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    • 4. 发明授权
    • Space based monitoring of global maritime shipping using automatic identification system
    • 全球海运使用自动识别系统进行空间监控
    • US07809370B2
    • 2010-10-05
    • US11806267
    • 2007-05-30
    • John StolteAnthony RobinsonAnthony Hopko
    • John StolteAnthony RobinsonAnthony Hopko
    • H04W4/00
    • H04B7/18513
    • An automatic identification system (AIS) communications payload for a space vehicle traveling in earth orbit includes an antenna; a receiver connected to the antenna to receive an AIS signal including a reported vessel position transmitted from a vessel; a processor to process the received AIS messages and determine the accuracy of the reported vessel position; and a transmitter to transmit the processed AIS messages and the determined accuracy to a ground earth element. The processor may be configured to determine a position of the space vehicle; compare the reported vessel position to the space vehicle position; and determine the accuracy of the reported vessel position based on the comparison. The processor also may be configured to flag the AIS message as suspect when the reported vessel position is determined to be inaccurate.
    • 用于在地球轨道上行进的空间车辆的自动识别系统(AIS)通信有效载荷包括天线; 连接到所述天线的接收器,用于接收AIS信号,所述信号包括从船只发送的报告的船只位置; 一个处理器,用于处理所接收的AIS消息并确定报告的船只位置的准确性; 以及发送器,用于将经处理的AIS消息和确定的精度发送到接地元件。 处理器可以被配置为确定空间车辆的位置; 将报告的船只位置与航天器位置进行比较; 并根据比较确定所报告船舶位置的准确性。 当报告的船只位置被确定为不准确时,处理器还可以被配置为将AIS消息标记为可疑。
    • 6. 发明授权
    • Control of heating and ventilation systems
    • 加热和通风系统的控制
    • US4189094A
    • 1980-02-19
    • US875525
    • 1978-02-06
    • Anthony Robinson
    • Anthony Robinson
    • F24F5/00F24F11/00F24F11/053F23N5/20F24F7/00
    • F24F5/0071F24F11/0001F24F11/053
    • A control system is provided which automatically varies the degree of ventilation of an indoor swimming pool in response to variations in the outside temperature and comprises separate speed-regulating means for each of the fan-driving motors, each speed-regulating means being operated in response to signals received from a master controller connected to the output of an external temperature sensor. The control system also incorporates means for automatically lowering the level of the temperature to be maintained when the swimming pool is unoccupied, in inverse proportion to the difference between the outside and inside temperatures, this lowering being effected in small increments at relatively long intervals of time.
    • 提供一种控制系统,其响应于外部温度的变化自动改变室内游泳池的通风程度,并且包括用于每个风扇驱动电动机的单独的调速装置,每个调速装置响应于操作 从连接到外部温度传感器的输出的主控制器接收的信号。 控制系统还包括用于当游泳池未被占用时自动降低要维持的温度水平的装置,与外部和内部温度之间的差异成反比,这种降低以相对较长的时间间隔以小的增量进行 。
    • 7. 发明申请
    • HEATING AND/OR COOLING SYSTEM AND RELATED METHODS
    • 加热和/或冷却系统及相关方法
    • US20140034285A1
    • 2014-02-06
    • US13984777
    • 2012-02-09
    • Anthony Robinson
    • Anthony Robinson
    • F24D11/02F25B30/02F24D19/10
    • F24D11/02E04H4/129F24D11/0214F24D19/10F24D19/1039F25B25/005F25B30/02F25B2700/1933F25B2700/21151Y02B30/125
    • A method of heating and/or cooling an area to a desired temperature comprising using a heat pump having an evaporator, a compressor, a condenser and an expansion control means each connected by a refrigerant pipe work system and the method comprising monitoring the temperature of an environment in which the evaporator is operating and using a system controller to vary in response to the monitored temperature, the temperature at which gas condenses to a fluid within the condenser to keep it as low as possible whilst maintaining the condensing temperature a predetermined amount above the desired temperature and/or also varying in response to the monitored temperature, the temperature at which a liquid expands to a gas within the evaporator in order to reduce the difference between the evaporating and condensing temperatures.
    • 一种将区域加热和/或冷却到所需温度的方法,包括使用具有蒸发器,压缩机,冷凝器和膨胀控制装置的热泵,所述蒸发器,压缩机,冷凝器和膨胀控制装置均通过制冷剂管道工作系统连接,并且包括监测温度 蒸发器运行的环境,并且使用系统控制器响应于所监视的温度而变化,气体冷凝到冷凝器内的流体以使其尽可能低,同时将冷凝温度保持在预定量以上 所需温度和/或也响应于所监测的温度而变化,液体膨胀到蒸发器内的气体的温度,以便减少蒸发和冷凝温度之间的差异。
    • 8. 发明申请
    • Space based network for detection and monitoring of global maritime shipping using automatic identification system
    • 基于空间的网络,用于使用自动识别系统检测和监测全球海运
    • US20080086267A1
    • 2008-04-10
    • US11806268
    • 2007-05-30
    • John StolteAnthony RobinsonAnthony Hopko
    • John StolteAnthony RobinsonAnthony Hopko
    • G01C23/00G06F17/30G06F17/40
    • H04B7/18513
    • A spaced-based system is provided to simultaneously track and monitor one or more ocean going vessels at any point on the earth. The system includes a plurality of space vehicles or satellites. Each satellite includes an AIS communications payload to receive AIS signals including AIS information transmitted from the one or more vessels and to transmit the received AIS information. The system also includes a plurality of ground earth elements. Each ground earth element includes a receiver to receive the AIS information transmitted from one or more of the plurality of satellites to globally track and monitor the one or more vessels based on the AIS information received from the communications payload. The plurality of satellites are distributed in two or more orbital planes located at a substantially common altitude and having a substantially common inclination. In particular, the satellites may be deployed in a low earth orbit constellation.
    • 提供基于间隔的系统以在地球上的任何点同时跟踪和监测一个或多个远洋船只。 该系统包括多个航天器或卫星。 每个卫星包括AIS通信有效载荷,用于接收AIS信号,包括从一个或多个船舶发送的AIS信息,并发送所接收的AIS信息。 该系统还包括多个地面接地元件。 每个接地元件包括接收器,用于接收从多个卫星中的一个或多个发射的AIS信息,以便基于从通信有效载荷接收的AIS信息来全面跟踪和监视该一个或多个容器。 多个卫星分布在位于基本上共同的高度并且具有基本相同倾斜度的两个或更多个轨道平面中。 特别地,卫星可以部署在低地球轨道星座中。
    • 9. 发明授权
    • Boiler cycling controller
    • 锅炉循环控制器
    • US4637349A
    • 1987-01-20
    • US628992
    • 1984-07-09
    • Anthony Robinson
    • Anthony Robinson
    • F24D12/02F24D19/10F22B35/00
    • F24D19/1009F24D12/02F24D2200/043Y02B30/14
    • In a system for controlling a number of central heating boilers of large capacity having means for switching-off each boiler when the flow temperature reaches a predetermined maximum, the temperature at which each boiler is switched on again can be automatically varied in dependence upon the outside temperature in such a manner that as the outside temperature rises the boiler is switched on at progressively lower boiler flow temperatures, thus increasing the length of the boiler cycles. This is achieved by a boiler cycling controller which receives signals from temperature detecting devices located externally of the building and in the water flow and return lines and is operable automatically to vary the point at which the boiler is switched on.
    • 在用于控制大容量的多个中央加热锅炉的系统中,当流量温度达到预定的最大值时,每个锅炉关闭的温度可以根据外部的自动变化而自动变化 温度使得当外部温度升高时,锅炉在逐渐降低的锅炉流动温度下被接通,从而增加了锅炉循环的长度。 这通过一个锅炉循环控制器来实现,锅炉循环控制器从位于建筑物外部的温度检测装置和水流和回流管线接收信号,并且可自动地操作以改变锅炉被打开的点。
    • 10. 发明申请
    • Space based monitoring of global maritime shipping using automatic identification system
    • 全球海运使用自动识别系统进行空间监控
    • US20080088485A1
    • 2008-04-17
    • US11806267
    • 2007-05-30
    • John StolteAnthony RobinsonAnthony Hopko
    • John StolteAnthony RobinsonAnthony Hopko
    • G08G1/123
    • H04B7/18513
    • An automatic identification system (AIS) communications payload for a space vehicle traveling in earth orbit includes an antenna; a receiver connected to the antenna to receive an AIS signal including a reported vessel position transmitted from a vessel; a processor to process the received AIS messages and determine the accuracy of the reported vessel position; and a transmitter to transmit the processed AIS messages and the determined accuracy to a ground earth element. The processor may be configured to determine a position of the space vehicle; compare the reported vessel position to the space vehicle position; and determine the accuracy of the reported vessel position based on the comparison. The processor also may be configured to flag the AIS message as suspect when the reported vessel position is determined to be inaccurate.
    • 用于在地球轨道上行进的空间车辆的自动识别系统(AIS)通信有效载荷包括天线; 连接到所述天线的接收器,用于接收AIS信号,所述信号包括从船只发送的报告的船只位置; 一个处理器,用于处理所接收的AIS消息并确定报告的船只位置的准确性; 以及发送器,用于将经处理的AIS消息和确定的精度发送到接地元件。 处理器可以被配置为确定空间车辆的位置; 将报告的船只位置与航天器位置进行比较; 并根据比较确定所报告船舶位置的准确性。 当报告的船只位置被确定为不准确时,处理器还可以被配置为将AIS消息标记为可疑。