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    • 3. 发明申请
    • METHODS AND APPARATUS FOR IDENTIFYING AND/OR SELECTING CHANNELS
    • 识别和/或选择通道的方法和装置
    • US20130059614A1
    • 2013-03-07
    • US13226101
    • 2011-09-06
    • Sreeram KannanAhmed K. SadekStephen J. ShellhammerSaurabh TavildarNilesh Khude
    • Sreeram KannanAhmed K. SadekStephen J. ShellhammerSaurabh TavildarNilesh Khude
    • H04W72/02
    • H04W72/06H04W8/005
    • A decentralized approach to peer discovery channel selection is used in some embodiments. In some such embodiments, a mobile wireless terminal supporting a peer to peer signaling protocol, independently determines what channels to use for peer discovery without a central controller indicating the channel or channels to be used. Assuming channels are of a suitable quality, the channels having the best quality need not be identified, with channel selection being made on a predetermined channel ordering basis from those with suitable quality. Different wireless communications devices in the system use the same peer discovery channel selection process making it likely that the same channel or channels will tend to be picked to be used for peer discovery. Other embodiments are directed to implementing a centralized approach to peer discovery channel selection in which a central controller or base station selects channels to be used for peer discovery signaling.
    • 在一些实施例中使用分布式对等体发现信道选择方法。 在一些这样的实施例中,支持对等信令协议的移动无线终端独立地确定用于对等体发现的哪些信道,而不指示要使用的信道或信道的中央控制器。 假设信道具有合适的质量,则不需要识别具有最佳质量的信道,其中信道选择是从具有适当质量的信道选择进行的。 系统中的不同的无线通信设备使用相同的对等体发现信道选择过程,使得可能相同的信道或信道将倾向于被选择用于对等体发现。 其他实施例涉及实现对等体发现信道选择的集中式方法,其中中央控制器或基站选择要用于对等体发现信令的信道。
    • 4. 发明申请
    • SENSING WIRELESS COMMUNICATIONS IN TELEVISION FREQUENCY BANDS
    • 电视频段无线通信
    • US20110045781A1
    • 2011-02-24
    • US12858334
    • 2010-08-17
    • Stephen J. ShellhammerAhmed K. SadekWenyi Zhang
    • Stephen J. ShellhammerAhmed K. SadekWenyi Zhang
    • H04B17/00
    • H04B17/0057H04B17/26H04B17/318H04B17/382
    • In general, techniques are described for sensing wireless communications in television frequency bands, which may be implemented by a sensing device comprising a sensing unit, a power spectral density (PSD) estimation unit, a filter unit, a candidate selection unit, an analysis unit and a decision unit. The sensing unit senses a signal in the television frequencies bands. The PSD estimation unit calculates an estimate of a PSD for the sensed signal. The filter unit filters the estimated PSD. The candidate selection unit analyzes the filtered PSD to identify a candidate frequency representative of a potentially in use frequency. The analysis unit computes a test statistic for the candidate frequency. The decision unit compares the test statistic to a threshold to identify whether the candidate frequencies is actively in use by wireless communication devices.
    • 通常,描述了用于感测电视频带中的无线通信的技术,其可以由包括感测单元,功率谱密度(PSD)估计单元,滤波器单元,候选选择单元,分析单元 和决策单位。 感测单元感测电视频带中的信号。 PSD估计单元计算感测信号的PSD的估计。 过滤器单元过滤估计的PSD。 候选选择单元分析经滤波的PSD以识别代表潜在使用频率的候选频率。 分析单元计算候选频率的测试统计量。 决策单元将测试统计量与阈值进行比较,以识别候选频率是否被无线通信设备主动使用。
    • 6. 发明申请
    • Spatio-Temporal Random Voting Scheme For Cognitive Networks
    • 认知网络的时空随机投票方案
    • US20100105419A1
    • 2010-04-29
    • US12553955
    • 2009-09-03
    • Yong Jin KimLakshminath R. DondetiStephen J. ShellhammerWenyi Zhang
    • Yong Jin KimLakshminath R. DondetiStephen J. ShellhammerWenyi Zhang
    • H04B7/00
    • 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。