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    • 5. 发明申请
    • Active Antennas for Multiple Bands in Wireless Portable Devices
    • 无线便携式设备中多频带的有源天线
    • US20130141294A1
    • 2013-06-06
    • US13713804
    • 2012-12-13
    • Theodore S. Rappaport
    • Theodore S. Rappaport
    • H01Q5/00
    • H01Q5/0031H01Q1/243H01Q5/314H01Q5/335H01Q5/357H04B1/0053
    • Wireless devices, and particularly mobile devices such as cellphones, PDAs, computers, navigation devices, etc., as well as other devices which transmit or receive data or other signals at multiple frequency bands utilize at least one antenna to transmit and receive and a plurality of different bands (e.g., GSM cellular communication band; Bluetooth short range communication band; ultrawideband (UWB) communications, etc.). These wireless devices can simultaneously transmit or receive at a plurality of different bands, or simultaneously transmit and receive at different bands. The wireless devices have the ability to use a single physical structure (e.g., an antenna) for transmission and reception of many different bands. The antenna can be either actively tuned or passively tuned using one or more elements.
    • 无线设备,特别是诸如蜂窝电话,PDA,计算机,导航设备等的移动设备以及在多个频带发送或接收数据或其他信号的其他设备利用至少一个天线进行发送和接收,并且多个 (例如,GSM蜂窝通信频带;蓝牙短距离通信频带;超宽带(UWB)通信等)。 这些无线设备可以在多个不同的频带同时进行发送或接收,或同时在不同的频带发送和接收。 无线设备具有使用单个物理结构(例如,天线)来发送和接收许多不同频带的能力。 天线可以使用一个或多个元件进行主动调谐或被动调谐。
    • 7. 发明授权
    • Method and system to model frequency dependent effects of a communciations network
    • 通信网络频率依赖效应的方法和系统
    • US08290499B2
    • 2012-10-16
    • US13093445
    • 2011-04-25
    • Theodore S. RappaportRoger B. SkidmoreEric Reifsneider
    • Theodore S. RappaportRoger B. SkidmoreEric Reifsneider
    • H04W40/00
    • H04W16/20H04B17/23H04B17/309H04B17/318H04B17/336H04B17/3913
    • A computerized model provides a display of a physical environment in which a communications network is or will be installed. The communications network is comprised of several components, each of which are selected by the design engineer and which are represented in the display. Errors in the selection of certain selected components for the communications network are identified by their attributes or frequency characteristics as well as by their interconnection compatibility for a particular design. The effects of changes in frequency on component performance are modeled and the results are displayed to the design engineer. A bill of materials is automatically checked for faults and generated for the design system and provided to the design engineer. For ease of design, the design engineer can cluster several different preferred components into component kits, and then select these component kits for use in the design or deployment process.
    • 计算机化模型提供了在其中安装通信网络或将要安装通信网络的物理环境的显示。 通信网络由几个组件组成,每个组件由设计工程师选择并在显示器中表示。 选择通信网络中某些选定组件的错误是由其属性或频率特性以及特定设计的互连兼容性来标识的。 模拟了频率变化对组件性能的影响,并将结果显示给设计工程师。 自动检查材料清单,为设计系统生成故障并提供给设计工程师。 为了易于设计,设计工程师可以将几个不同的首选组件集成到组件套件中,然后选择这些组件工具包以用于设计或部署过程。
    • 10. 发明授权
    • Method and system for generating a real time bill of materials and evaluating network performance
    • 用于生成实时物料清单和评估网络性能的方法和系统
    • US07596518B2
    • 2009-09-29
    • US10266711
    • 2002-10-09
    • Theodore S RappaportRoger R. Skidmore
    • Theodore S RappaportRoger R. Skidmore
    • G06Q30/00
    • G06Q10/087G06Q10/0875G06Q30/04
    • An automated method for quickly generating a complete bill of materials and total cost information in real time. Components for a desired system are specified and/or replaced by substitute components, while continuously predicting the wireless system performance. A design engineer builds a model of the desired wireless communications system and specifies each component necessary to provide sufficient or optimal system performance. A parts list is maintained, in real time, that contains a definition of each system component and its associated performance and cost parameters. As the user changes wireless system designs through a series of “what-if” scenarios, components are replaced with substitute components, cable lengths are modified, antenna systems and base station parameters are re-designed and moved to alternate locations, etc. The bill of materials is automatically updated and component costs and total system costs are immediately available to the design engineer. The designer may choose to swap components for less expensive components or may investigate several alternate radio frequency distribution and antenna schemes, etc. The performance characteristics of the system are automatically updated as is the system cost as the designer to assesses the trade-offs between performance and cost at the same time.
    • 一种实时快速生成完整的材料清单和总成本信息的自动化方法。 在连续预测无线系统性能的同时,为替代组件指定和/或替换所需系统的组件。 设计工程师构建所需无线通信系统的模型,并指定提供足够或最佳系统性能所需的每个组件。 实时维护零件列表,其中包含每个系统组件的定义及其相关的性能和成本参数。 随着用户通过一系列“假设”情景改变无线系统设计,组件被替换为替代组件,电缆长度被修改,天线系统和基站参数被重新设计并移动到备用位置等。 的材料自动更新,组件成本和总体系统成本可立即提供给设计工程师。 设计人员可以选择将组件交换成较便宜的组件,或者可以调查几种替代的射频分布和天线方案等。系统的性能特征会像设计人员一样自动更新,以评估性能之间的权衡 和成本在同一时间。