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    • 5. 发明申请
    • Interferometric Synthetic Aperture Radar for Imaging of Buildings
    • 用于成像成像的干涉合成孔径雷达
    • US20110012777A1
    • 2011-01-20
    • US12502325
    • 2009-07-14
    • John L. TomichRaymond SamaniegoJerry M. Grimm
    • John L. TomichRaymond SamaniegoJerry M. Grimm
    • G01S13/90
    • G01S13/90G01S13/0209G01S13/888G01S2013/0245
    • According to one embodiment, a synthetic aperture radar includes multiple antenna elements coupled to an image processing application. The antenna elements have a differing vertical spatial separation relative to one another and are configured to transmit a radio-frequency signal toward a stationary object and receive multiple reflected radio-frequency signals from one or more internal features of the building. The image processing application receives the reflected radio-frequency signals as the antenna elements are moved horizontally with respect to the stationary object. From these reflected radio-frequency signals, the image processing application generates imagery of the stationary object according to phase variations in the plurality of received radio-frequency signals. The imagery depicting vertical characteristics of the one or more internal features of the building.
    • 根据一个实施例,合成孔径雷达包括耦合到图像处理应用的多个天线元件。 天线元件相对于彼此具有不同的垂直空间间隔,并且被配置为朝向固定物体传送射频信号,并从建筑物的一个或多个内部特征接收多个反射的射频信号。 当天线元件相对于静止物体水平移动时,图像处理应用接收反射的射频信号。 根据这些反射的射频信号,图像处理应用根据多个接收的射频信号中的相位变化产生静止物体的图像。 该图像描绘了建筑物的一个或多个内部特征的垂直特征。
    • 6. 发明授权
    • Radar for imaging of buildings
    • 用于建筑物成像的雷达
    • US08040273B2
    • 2011-10-18
    • US12502325
    • 2009-07-14
    • John L. TomichRaymond SamaniegoJerry M. Grimm
    • John L. TomichRaymond SamaniegoJerry M. Grimm
    • G01S13/89G01S13/90G01S13/00
    • G01S13/90G01S13/0209G01S13/888G01S2013/0245
    • According to one embodiment, a radar includes multiple antenna elements coupled to an image processing application. The antenna elements have a differing vertical spatial separation relative to one another and are configured to transmit a radio-frequency signal toward a stationary object and receive multiple reflected radio-frequency signals from one or more internal features of the building. The image processing application receives the reflected radio-frequency signals as the antenna elements are moved horizontally with respect to the stationary object. From these reflected radio-frequency signals, the image processing application generates imagery of the stationary object according to phase variations in the plurality of received radio-frequency signals. The imagery depicting vertical characteristics of the one or more internal features of the building.
    • 根据一个实施例,雷达包括耦合到图像处理应用的多个天线元件。 天线元件相对于彼此具有不同的垂直空间间隔,并且被配置为朝向固定物体传送射频信号,并从建筑物的一个或多个内部特征接收多个反射的射频信号。 当天线元件相对于静止物体水平移动时,图像处理应用接收反射的射频信号。 根据这些反射的射频信号,图像处理应用根据多个接收的射频信号中的相位变化产生静止物体的图像。 该图像描绘了建筑物的一个或多个内部特征的垂直特征。
    • 7. 发明申请
    • Distributed Sensor SAR Processing System
    • 分布式传感器SAR处理系统
    • US20110148691A1
    • 2011-06-23
    • US12642224
    • 2009-12-18
    • Raymond SamaniegoJohn L. Tomich
    • Raymond SamaniegoJohn L. Tomich
    • G01S13/90
    • G01S13/90G01S13/003G01S13/9058
    • According to one embodiment, a synthetic aperture radar (SAR) processing system includes multiple radar receivers and a corresponding multiple location determining devices communicating with a SAR processor. The SAR processor receives return envelopes from each radar receiver indicative of electro-magnetic energy reflected from a target of interest. The SAR processor also receives, from multiple location determining devices that are each configured with each radar receiver, a location signal representing the position of its associated radar receiver, and generates imagery of the target according to the received envelopes and the position associated with each received envelope.
    • 根据一个实施例,合成孔径雷达(SAR)处理系统包括多个雷达接收机和与SAR处理器通信的相应的多位置确定设备。 SAR处理器从每个雷达接收器接收指示从感兴趣目标反射的电磁能的返回信封。 SAR处理器还从每个配置有每个雷达接收机的多个位置确定设备接收表示其相关联的雷达接收机的位置的位置信号,并且根据接收到的信封和与每个接收的相关联的位置产生目标的图像 信封。
    • 8. 发明授权
    • Heat transfer device
    • 传热装置
    • US4182306A
    • 1980-01-08
    • US864327
    • 1977-12-27
    • John L. Tomich
    • John L. Tomich
    • F24B1/188F24B7/00
    • F24B1/188F24B1/1886Y10S165/901Y10S165/909
    • A heat transfer device for transferring excessive waste heat from the upper portion of a fireplace to the room comprising a high temperature heat exchanger positioned above the fire grate between the fire and the flue of the fireplace. A mass transfer tube communicates between the heat exchanger and the low temperature heat exchanger positioned above the lintel on the fireplace. A heat transfer fluid is secured within the hollow high temperature heat exchanger such as trichloromonofluoromethane such that as the fluid boils, the heat of the fire the liquid turns to a gas and moves through the mass transfer tube to low temperature exchanger. The fluid cools and gives up its heat to the low temperature exchanger which in turn gives up the heat to ambient air. As the fluid cools, it becomes a liquid again and flows back down the transfer tube from which it came to the high temperature exchanger. If desired, a blower may be provided to force air across the low temperature exchanger to provide a more efficient exchange of heat.
    • 一种传热装置,用于将过多的废热从壁炉的上部传递到房间,该房间包括位于火炉和炉壁烟道之间的炉排上方的高温热交换器。 传质管在热交换器和位于壁炉上的楣板上方的低温热交换器之间连通。 传热流体固定在中空高温热交换器如三氯一氟甲烷中,使得当流体沸腾时,液体变成气体并且通过传质管移动到低温交换器。 流体冷却并将其放热到低温交换器,而低温交换器又将热量放给环境空气。 当流体冷却时,它再次成为液体,并从其到达高温交换器的传送管流回。 如果需要,可以提供鼓风机以迫使空气穿过低温交换器以提供更有效的热交换。
    • 9. 发明授权
    • Photonic home area network
    • 光子家庭网络
    • US07808984B2
    • 2010-10-05
    • US11483713
    • 2006-07-10
    • John L. TomichMichael J. VonahnenMichael B. Sheehan
    • John L. TomichMichael J. VonahnenMichael B. Sheehan
    • H04L12/28H04L12/56
    • H04L12/2803H04L12/2834H04L12/2838H04L12/2852H04Q11/0067H04Q11/0071H04Q2011/0073
    • An apparatus for a service node used in a multimedia network. The apparatus has a data distributor circuit, and a decoder. The data distributor card has a data port for coupling with a data stream. The data distributor circuit has a relational code for determining whether an address field of a data packet of the data stream is intended for local distribution to peripheral devices by the distribution circuit. The decoder, in communication with the distribution circuit, has a virtual channel filter for filtering the address field to route the data packet to at least one data port, such as that associated with a peripheral device. An incorporator circuit is provided that is electrically-coupled to the data port to insert an address value having a relational code and a virtual channel code in a data input from the at least one data port. The incorporator then inserts the data input from the at leas tone data port into the data stream. In a method of the invention, interfacing a multimedia communications data stream having a plurality of data packets is provided. Inputting a data packet of the data stream, determining whether an address field of the data packet is intended for local distribution, and routing the data packet to a data port if the data packet is intended for local distribution. Otherwise, the data packet is returned to the data stream if the data packet is not intended for local distribution.
    • 一种用于多媒体网络中的服务节点的装置。 该装置具有数据分配器电路和解码器。 数据分配卡具有用于与数据流耦合的数据端口。 数据分配器电路具有用于确定数据流的数据分组的地址字段是否用于由分配电路局部分配给外围设备的关系码。 与分配电路通信的解码器具有虚拟信道滤波器,用于对地址字段进行过滤以将数据分组路由到至少一个数据端口,例如与外围设备相关联的数据端口。 提供一种电连接到数据端口的并入电路,以将具有关系码和虚拟信道码的地址值插入到从至少一个数据端口输入的数据中。 然后,引入器将从列表音数据端口输入的数据插入到数据流中。 在本发明的方法中,提供了具有多个数据分组的多媒体通信数据流的接口。 输入数据流的数据包,确定数据包的地址字段是否用于本地分发,如果数据包用于本地分发,则将数据包路由到数据端口。 否则,如果数据包不用于本地分发,数据包将返回到数据流。