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    • 91. 发明授权
    • Distributed database access for spectrum access
    • 用于频谱接入的分布式数据库访问
    • US08812011B2
    • 2014-08-19
    • US12703490
    • 2010-02-10
    • Amer A. HassanAndrew T. BaronBilly R. Anders, Jr.Anoop Gupta
    • Amer A. HassanAndrew T. BaronBilly R. Anders, Jr.Anoop Gupta
    • H04B5/00
    • H04W16/14H04W4/00H04W4/50H04W8/005H04W48/14
    • A bootstrapping technique for wirelessly obtaining white space data that may be used to identify an available white space channel for connecting to a service. Portable wireless devices may collaborate to provide white space data to a device requesting such data. A requesting device transmits a request for the white space data using, for example, an unlicensed band. A device receiving the request may transmit a copy of the data to the requesting device. The transmitted copy may be obtained by the receiving device from a local data store or may be provided from a database server to which the receiving device is connected. In the later case the receiving device acts as a proxy between the database server and the requesting device. Once the white space data is received by the requesting device it may be used to select a channel for communication in the white space.
    • 用于无线获取可用于识别用于连接到服务的可用空白信道的空白数据的自举技术。 便携式无线设备可以协作来向请求这样的数据的设备提供空白数据。 请求设备使用例如未许可频带来发送对空白数据的请求。 接收请求的设备可以将数据的副本发送到请求设备。 发送的副本可以由接收设备从本地数据存储器获得,或者可以从接收设备连接到的数据库服务器提供。 在后一种情况下,接收设备充当数据库服务器和请求设备之间的代理。 一旦该空白数据被请求设备接收,它可以用于选择用于在空白处进行通信的信道。
    • 93. 发明授权
    • Network service for modularly constructing a software defined radio
    • 用于模块化构建软件定义无线电的网络服务
    • US08346900B2
    • 2013-01-01
    • US12749955
    • 2010-03-30
    • Amer A. HassanChristian HuitemaVishesh M. Parikh
    • Amer A. HassanChristian HuitemaVishesh M. Parikh
    • G06F15/177
    • H04L63/10G06F8/36G06Q20/102G06Q30/04H04B1/0032H04H60/04H04L67/34H04L2463/101
    • Systems and methods are provided that disclose a network service for modularly constructing a software defined radio (“SDR”). A server system provides an SDR kernel (i.e., a potentially platform-neutral definition of digital signal processing functionality and control operations necessary to implement the core portion of a software defined radio implementing a particular radio standard) to a client system. The client system may select a desired SDR kernel through a variety of means disclosed herein. While some SDR kernels may be provided for free and unrestricted use, others may be purchased or subscribed to and additionally restricted by digital rights management (“DRM”) policies. Based upon the agreed upon payment terms and any other restrictions, a customized set of DRM policies may be applied by the server system to the SDR kernel before sending it to a client system. Additionally, the server system may provide a description of governmental regulations applicable to a given locality.
    • 提供了公开用于模块化构建软件定义无线电(SDR)的网络服务的系统和方法。 服务器系统向客户端系统提供SDR内核(即,数字信号处理功能的潜在平台中立定义和实现特定无线电标准的软件定义的无线电的核心部分所必需的控制操作)。 客户端系统可以通过本文公开的各种手段来选择期望的SDR内核。 虽然一些SDR内核可能被提供为免费和不受限制的使用,但是其他可以被数字版权管理(DRM)策略购买或订阅并且另外受到限制。 根据约定的付款条件和任何其他限制,服务器系统可以将定制的一组DRM策略应用于SDR内核,然后将其发送到客户端系统。 此外,服务器系统可以提供适用于给定地点的政府规章的描述。
    • 98. 发明授权
    • Simultaneous wireless support in software defined radio
    • 在软件定义的无线电中同时进行无线支持
    • US08054779B2
    • 2011-11-08
    • US11899276
    • 2007-09-05
    • Amer A. HassanDeyun WuHui ShenChristian HuitemaThomas W. Kuehnel
    • Amer A. HassanDeyun WuHui ShenChristian HuitemaThomas W. Kuehnel
    • H04W4/00
    • H04W8/22H04W88/06
    • A system and method for providing the ability to discover the capabilities of a user's computer to determine whether it is capable of supporting more than one wireless protocol simultaneously is provided. A computing device's capabilities (including, for example, hardware and/or software capabilities) is checked to determine if it supports at least two specific wireless protocols and checking a computing device's capabilities (including, for example, hardware and/or software capabilities) is checked to determine if it supports both wireless protocols simultaneously. The techniques for determining the computing device's compatibility may include comparing lists of protocol requirements to lists of system capabilities and/or generating test signals by the system according to the protocol.
    • 提供了一种用于提供发现用户计算机的能力以确定其是否能够同时支持多于一个无线协议的能力的系统和方法。 检查计算设备的能力(包括例如硬件和/或软件能力)以确定其是否支持至少两个特定的无线协议并且检查计算设备的能力(包括例如硬件和/或软件能力)是 检查以确定它是否同时支持两个无线协议。 用于确定计算设备的兼容性的技术可以包括将协议要求的列表与根据协议的系统的系统能力的列表和/或生成测试信号进行比较。
    • 99. 发明授权
    • Energy detection receiver for UWB
    • UWB能量检测接收机
    • US08014468B2
    • 2011-09-06
    • US11012815
    • 2004-12-15
    • Amer A. HassanJenelle R. Coberly
    • Amer A. HassanJenelle R. Coberly
    • H04L27/20
    • H04L27/28H04B1/71637
    • The receiver portion of a UWB wireless device is altered by replacing analog-to-digital circuitry with a simple energy detection circuit. In embodiments of the invention, the coding methodology of a transmitter is altered to support the simplified receiver configuration. For example, instead of coding the data to be sent in the phase of the UWB signal, the data is encoded in a binary fashion in discrete frequency subbands of the UWB signal. Although this may reduce the usable bandwidth of the channel, it also decreases the complexity and power consumption of UWB devices. In another embodiment of the invention, a UWB device is able to select a transmission mode (BPSK or Energy Coding) based on its environment. Moreover, in a further embodiment of the invention, receiving devices may switch between coding modes based on the capabilities of a remote transmitter and/or a peer receiver.
    • 通过用简单的能量检测电路代替模拟数字电路来改变UWB无线设备的接收机部分。 在本发明的实施例中,改变发射机的编码方法以支持简化的接收机配置。 例如,不是以UWB信号的相位对要发送的数据进行编码,而是以UWB信号的离散频率子带中的二进制形式对数据进行编码。 尽管这可能降低了信道的可用带宽,但也降低了UWB设备的复杂性和功耗。 在本发明的另一实施例中,UWB设备能够基于其环境来选择传输模式(BPSK或能量编码)。 此外,在本发明的另一实施例中,接收设备可以基于远程发射机和/或对等接收机的能力在编码模式之间切换。