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    • 2. 发明申请
    • PROTOCOLS FOR ENABLING MODE 1 AND MODE 2 DEVICES IN TV WHITE SPACE NETWORKS
    • 用于启用电视空白网络的模式1和模式2设备的协议
    • WO2012061504A8
    • 2013-05-02
    • PCT/US2011058966
    • 2011-11-02
    • QUALCOMM INCABRAHAM SANTOSH PAULJAIN AVINASHSHELLHAMMER STEPHEN JSAMPATH HEMANTH
    • ABRAHAM SANTOSH PAULJAIN AVINASHSHELLHAMMER STEPHEN JSAMPATH HEMANTH
    • H04W72/04H04W16/14
    • H04W72/0453H04L5/0096H04W16/14H04W88/06
    • Certain aspects of the present disclosure provide techniques and apparatus for operating in a television white space (TVWS) network. One example method generally includes receiving, at an apparatus, a message with a field indicating a current version of an unused frequency spectrum map (e.g., a white space map (WSM)), the unused frequency spectrum map indicating channels usable for wireless communications; determining whether the current version of the unused frequency spectrum map is different than a previous version of the unused frequency spectrum map; and using a channel for wireless communications based on the determination. Another example method generally includes accessing a database of available channels for a current location of an apparatus via a neighboring portable or fixed enabling apparatus and enabling one or more portable dependent apparatuses for the wireless communications via one or more of the available channels.
    • 本公开的某些方面提供了用于在电视空白(TVWS)网络中操作的技术和装置。 一个示例性方法通常包括在装置处接收具有指示未使用频谱图(例如,空白映射(WSM))的当前版本的字段的消息,该未使用频谱图指示可用于无线通信的信道; 确定当前版本的未使用频谱图是否与未使用的频谱图的先前版本不同; 以及基于该确定使用用于无线通信的信道。 另一示例性方法通常包括经由相邻的便携式或固定的启用设备访问设备的当前位置的可用信道的数据库,并且使得一个或多个便携式依赖设备能够经由一个或多个可用信道进行无线通信。
    • 3. 发明申请
    • PROTOCOLS FOR ENABLING MODE 1 AND MODE 2 DEVICES IN TV WHITE SPACE NETWORKS
    • 用于启用电视空白网络的模式1和模式2设备的协议
    • WO2012061504A3
    • 2012-08-02
    • PCT/US2011058966
    • 2011-11-02
    • QUALCOMM INCABRAHAM SANTOSHM PAULJAIN AVINASHSHELLHAMMER STEPHEN JSAMPATH HEMANTH
    • ABRAHAM SANTOSHM PAULJAIN AVINASHSHELLHAMMER STEPHEN JSAMPATH HEMANTH
    • H04W72/04H04W16/14
    • H04W72/0453H04L5/0096H04W16/14H04W88/06
    • Certain aspects of the present disclosure provide techniques and apparatus for operating in a television white space (TVWS) network. One example method generally includes receiving, at an apparatus, a message with a field indicating a current version of an unused frequency spectrum map (e.g., a white space map (WSM)), the unused frequency spectrum map indicating channels usable for wireless communications; determining whether the current version of the unused frequency spectrum map is different than a previous version of the unused frequency spectrum map; and using a channel for wireless communications based on the determination. Another example method generally includes accessing a database of available channels for a current location of an apparatus via a neighboring portable or fixed enabling apparatus and enabling one or more portable dependent apparatuses for the wireless communications via one or more of the available channels.
    • 本公开的某些方面提供了用于在电视空白(TVWS)网络中操作的技术和装置。 一个示例性方法通常包括在装置处接收具有指示未使用频谱图(例如,空白映射(WSM))的当前版本的字段的消息,该未使用频谱图指示可用于无线通信的信道; 确定当前版本的未使用频谱图是否与未使用的频谱图的先前版本不同; 以及基于该确定使用用于无线通信的信道。 另一示例性方法通常包括经由相邻的便携式或固定的启用设备访问设备的当前位置的可用信道的数据库,并且使得一个或多个便携式依赖设备能够经由一个或多个可用信道进行无线通信。
    • 8. 发明申请
    • DYNAMIC FREQUENCY SELECTION IN A COGNITIVE RADIO SYSTEM
    • 认知无线电系统中的动态频率选择
    • WO2010088586A3
    • 2010-09-23
    • PCT/US2010022704
    • 2010-02-01
    • QUALCOMM INCSADEK AHMED KGOROKHOV ALEXEI YSHELLHAMMER STEPHEN J
    • SADEK AHMED KGOROKHOV ALEXEI YSHELLHAMMER STEPHEN J
    • H04W16/14H04W72/08
    • H04W72/082H04W16/14H04W72/0406
    • Multichannel dynamic frequency selection in wireless networks (10, 20) begins with an access point (90, 100, 200) for a wireless network broadcasting a list of unused channels (300, 905) that are available for communication within the area served by the access point. The various access terminals (80, 101, 201) within this service area receive the broadcast and measure (401) various interference characteristics of each of the channels in the list. The access terminals then send (402) this interference information (301, 505) to the access point, which compiles a matrix of interference information (906) that is associated with the quality of each signal as related to each access terminal. Using this information, the access point selects (302, 702) the appropriate channels to serve the most number of access terminals at the highest possible channel qualities.
    • 无线网络(10,20)中的多信道动态频率选择从无线网络的接入点(90,100,200)开始,所述无线网络广播无用信道列表(300,905),所述未使用信道可用于在由 切入点。 该服务区域内的各种接入终端(80,101,201)接收广播并测量(401)列表中每个频道的各种干扰特性。 接入终端然后将该干扰信息(402a)发送(402)到接入点,该接入点编译与每个接入终端相关的每个信号的质量相关联的干扰信息矩阵(906)。 使用该信息,接入点选择(302,702)适当的信道,以尽可能高的信道质量来服务于最多的接入终端。
    • 9. 发明申请
    • SPATIO-TEMPORAL RANDOM VOTING SCHEME FOR COGNITIVE NETWORKS
    • 用于认知网络的空间随机投票计划
    • WO2010062631A2
    • 2010-06-03
    • PCT/US2009062278
    • 2009-10-28
    • QUALCOMM INCKIM YONG JINDONDETI LAKSHMINATH RSHELLHAMMER STEPHEN JZHANG WENYI
    • KIM YONG JINDONDETI LAKSHMINATH RSHELLHAMMER STEPHEN JZHANG WENYI
    • H04W16/00
    • H04W24/00H04W72/02H04W72/082H04W84/18
    • A spatio-temporal random voting scheme is provided that incorporates location distribution, spatial randomness, and temporal randomness in the collection of information from a plurality of sensing devices within the cognitive network. The region is divided into a plurality of sectors, where each sector is a portion of the region. A subset of sectors is selected from the plurality of sectors in the region to provide spatial randomness. A device is randomly selected from each sector in the subset of sectors to provide additional spatial randomness to the information collection process. Temporal randomness may be introduced by randomly selecting a timeslot within a sensing window period in which devices are to scan a frequency spectrum band to determine if a signal energy above a threshold is detected. Sensing reports are then collected from the selected sensing devices and used to determine whether the frequency spectrum band is available or in use.
    • 提供了一种时空随机投票方案,其包括来自认知网络内的多个感测装置的信息收集中的位置分布,空间随机性和时间随机性。 该区域被分成多个扇区,其中每个扇区是区域的一部分。 从区域中的多个扇区中选择扇区的子集以提供空间随机性。 从扇区子集中的每个扇区随机选择一个设备,以向信息收集过程提供额外的空间随机性。 可以通过在感测窗口周期内随机选择时隙来引入时间随机性,其中设备将扫描频谱带以确定是否检测到高于阈值的信号能量。 然后从所选择的感测装置收集感测报告,并用于确定频谱带是可用还是正在使用。