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    • 51. 发明申请
    • SYSTEM FOR IDENTIFYING A SELECTED TARGET IN A GEOGRAPHIC MODEL AND ASSOCIATED METHODS
    • 用于识别地理模型中选择的目标的系统和相关方法
    • US20110238689A1
    • 2011-09-29
    • US12748816
    • 2010-03-29
    • Gilbert Christopher DuncanGuillermo E. GutierrezBelinda Villegas
    • Gilbert Christopher DuncanGuillermo E. GutierrezBelinda Villegas
    • G06F17/30
    • G06F17/30241G06F17/30997
    • A system is for identifying a selected target in a geographic model. The system includes a database configured to store electronically a geographic model, different target model types with respective model-type metadata associated therewith, and different unique targets with unique target metadata associated therewith. A processor cooperates with the database and determines a proposed type-match between a selected target, with selected target metadata associated therewith, and one of the plurality of different target model types stored in the database based upon the selected target metadata and the model-type metadata. The processor also generates updated selected target metadata based upon confirmation of the proposed type-match, and determines a proposed unique target-match between the selected target and one of the different unique targets based upon confirmation of the proposed type-match and based upon the updated selected target metadata and the unique target metadata.
    • 系统用于在地理模型中识别所选择的目标。 该系统包括配置为电子地存储地理模型的数据库,具有与其相关联的各自模型类型元数据的不同目标模型类型以及与其相关联的唯一目标元数据的不同唯一目标。 处理器与数据库协作,并且基于所选择的目标元数据和模型类型来确定所选择的目标与所选择的与其相关联的目标元数据与存储在数据库中的多个不同目标模型类型之间的类型匹配 元数据。 基于所提出的类型匹配的确认,处理器还生成更新的所选择的目标元数据,并且基于所提出的类型匹配的确认并且基于所提出的类型匹配来确定所选择的目标与不同唯一目标中的一个之间的所提出的独特目标匹配 更新所选的目标元数据和唯一的目标元数据。
    • 53. 发明申请
    • COORDINATED ACTION ROBOTIC SYSTEM AND RELATED METHODS
    • 协调行动机器人系统及相关方法
    • US20110046781A1
    • 2011-02-24
    • US12545367
    • 2009-08-21
    • Matthew D. SUMMER
    • Matthew D. SUMMER
    • G05B19/418
    • B25J9/1689B25J9/162B25J9/1682G05B2219/39146G05B2219/39172G05B2219/39259G05B2219/39439G05B2219/40161G05B2219/40171
    • A coordinated action robotic system may include a plurality of robotic vehicles, each including a platform and at least one manipulator movable relative thereto. The robotic system may also include a remote operator control station that may include a respective controller for each manipulator. The remote operator control station may also include a mapping module to map movement of each manipulator relative to its platform. Operation of the controllers for manipulator movement in a given direction produces corresponding movement of the respective manipulators in the given direction such that the robotic vehicles may be controlled as if they were one robotic vehicle. The coordinated movement may result in increased operational efficiency, increased operational dexterity, and increased ease of controlling the robotic vehicles.
    • 协调动作机器人系统可以包括多个机器人车辆,每个机器人车辆包括平台和可相对于其移动的至少一个操纵器。 机器人系统还可以包括远程操作员控制站,其可以包括用于每个操纵器的相应的控制器。 远程操作员控制站还可以包括映射模块,以映射每个操纵器相对于其平台的移动。 用于在给定方向上的操纵器运动的控制器的操作在给定方向上产生相应的操纵器的相应运动,使得机器人车辆可以被控制好像它们是一个机器人车辆。 协调运动可能会提高运营效率,增加运营灵活性,并增加控制机器人车辆的便利性。
    • 54. 发明申请
    • VLAN TAGGING OVER IPSec TUNNELS
    • VLAN标签超过IPSec隧道
    • US20100228974A1
    • 2010-09-09
    • US12396505
    • 2009-03-03
    • Andrew WattsBruce W. Yancy
    • Andrew WattsBruce W. Yancy
    • H04L9/32H04L12/28
    • H04L12/4666H04L12/4633H04L63/0272H04L63/164H04L69/22
    • In accordance with a nonlimiting example, a network device transfers communications data along a communications channel within an Internet Protocol (IP) network. A communications module includes a signal input connected to the communications channel of the IP network and receives an Ethernet packet having an Ethernet header and IP data. A processor is coupled to the communications module and processes the Ethernet packet. It removes the Ethernet header and adds Virtual Local Area Network (VLAN) tagging information to a padding section in the packet. In one aspect, the processor includes an encryption module that encrypts the VLAN tagging information along with the IP data. The network device includes a signal output through which the packet is transferred to a destination within the IP network over the communications channel as an IPSec tunnel.
    • 根据非限制性示例,网络设备沿着因特网协议(IP)网络内的通信信道传送通信数据。 通信模块包括连接到IP网络的通信信道的信号输入,并且接收具有以太网报头和IP数据的以太网分组。 处理器耦合到通信模块并处理以太网分组。 它删除以太网头,并将虚拟局域网(VLAN)标记信息添加到数据包中的填充部分。 一方面,处理器包括加密模块,其与IP数据一起加密VLAN标签信息。 网络设备包括信号输出,通过该信号输出通过通信信道将分组传送到IP网络内的目的地作为IPSec隧道。
    • 56. 发明申请
    • BROADBAND DATA COMMUNICATIONS NETWORK WITH BACK-UP GATEWAYS, AND ASSOCIATED METHODS
    • 宽带数据通信网络与备用网关及相关方法
    • US20100103884A1
    • 2010-04-29
    • US12257572
    • 2008-10-24
    • THOMAS DOHERTYAndrew Ross
    • THOMAS DOHERTYAndrew Ross
    • H04W40/34
    • H04W24/04H04L45/586H04W40/34H04W88/16H04W92/045
    • A broadband data communications network includes mobile wireless communications devices, base stations, and a master access gateway for operating using a full data set for controlling broadband data communications between the base stations and the mobile wireless communications devices. A back-up gateway is coupled to a given one of the base stations for communicating with the master access gateway for generating a data subset from the full data set for the given base station and associated mobile wireless communications devices when communications between the given base station and the master access gateway is available. When communications is unavailable, then the back-up gateway operates using the data subset for controlling broadband data communications between the given base station and associated mobile wireless communications devices.
    • 宽带数据通信网络包括移动无线通信设备,基站和主接入网关,用于使用用于控制基站和移动无线通信设备之间的宽带数据通信的完整数据集进行操作。 备用网关耦合到给定的一个基站,用于与主接入网关进行通信,以便在给定基站和相关联的移动无线通信设备之间的通信时从给定基站和相关联的移动无线通信设备的完整数据集生成数据子集 并且主接入网关可用。 当通信不可用时,备用网关使用数据子集来操作以控制给定基站和相关联的移动无线通信设备之间的宽带数据通信。
    • 59. 发明申请
    • SYSTEM AND METHOD FOR PROCESSING MAP IMAGES
    • 用于处理地图图像的系统和方法
    • US20080174593A1
    • 2008-07-24
    • US11624250
    • 2007-01-18
    • Todd E. HamKurt L. FeldbushJason M. AsbellSean O. Miniclier
    • Todd E. HamKurt L. FeldbushJason M. AsbellSean O. Miniclier
    • G06T1/00
    • G06F17/30902
    • A system of processing map images includes a Web Mapping Service (WMS) for storing map images. A WMS proxy is operative with the WMS and receives from a client a request for a map image for display at the client. A WMS proxy includes a tile broker module that converts the request for the map image into a series of requests for obtaining map tiles. A cache system that stores the map tiles. The tile broker module is operative for returning cached map tiles if they already exist within the cache and retrieving map tiles from the WMS if map tiles are not returned from the cache. A tile building module is operative for building a map image at the WMS proxy from the map tiles in a requested format and resolution and displaying the map image at the client without resampling at the client.
    • 处理地图图像的系统包括用于存储地图图像的Web映射服务(WMS)。 WMS代理与WMS一起工作,并从客户端接收请求用于在客户端显示的地图图像。 WMS代理包括瓦片代理模块,其将地图图像的请求转换成用于获取地图块的一系列请求。 存储地图图块的缓存系统。 如果瓷砖代理模块已经存在于高速缓存中,则返回高速缓存的地图块,并且如果不从高速缓存返回地图块,则从WMS检索地图块。 瓦片建造模块用于以所请求的格式和分辨率从地图瓦片在WMS代理处建立地图图像,并且在客户端处不重新采样地在客户端处显示地图图像。
    • 60. 发明申请
    • Geospatial image change detecting system and associated methods
    • 地理空间图像变化检测系统及相关方法
    • US20080140271A1
    • 2008-06-12
    • US11328669
    • 2006-01-10
    • Robert M. GarceauGuillermo E. GutierrezMark RahmesTodd HamJoseph NemethyJay Hackett
    • Robert M. GarceauGuillermo E. GutierrezMark RahmesTodd HamJoseph NemethyJay Hackett
    • G01C23/00
    • G06T7/001
    • An image change detecting system may include an image processor cooperating with a geospatial scene model database for generating a reference geospatial image corresponding to the collected geospatial image, and a change detector cooperating with the image processor for detecting a change between the collected geospatial image and the reference geospatial image. The geospatial scene model database may include 3D scene model data, and the collected geospatial image and the reference geospatial image may each include respective 2D image data. The collected geospatial image may have at least one geospatial collection value associated therewith, and the image processor may generate the reference geospatial image based upon synthetically positioning a virtual geospatial image sensor within a geospatial scene model based upon the at least one geospatial collection value. The at least one geospatial collection value may include at least one of a geospatial collection position, a geospatial collection orientation, and a geospatial collection field-of-view.
    • 图像变化检测系统可以包括与地理空间场景模型数据库协作的图像处理器,用于生成对应于所收集的地理空间图像的参考地理空间图像;以及改变检测器,与图像处理器配合,用于检测所收集的地理空间图像与 参考地理空间形象。 地理空间场景模型数据库可以包括3D场景模型数据,并且收集的地理空间图像和参考地理空间图像可以各自包括相应的2D图像数据。 所收集的地理空间图像可以具有与之相关联的至少一个地理空间收集值,并且图像处理器可以基于基于至少一个地理空间收集值将地理空间场景模型中的虚拟地理空间图像传感器合成地定位来生成参考地理空间图像。 所述至少一个地理空间收集值可以包括地理空间收集位置,地理空间收集方向和地理空间收集视野中的至少一个。