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    • 2. 发明授权
    • Methods and apparatus for peer-to-peer communications resource scheduling
    • 用于对等通信资源调度的方法和装置
    • US08804689B2
    • 2014-08-12
    • US13473067
    • 2012-05-16
    • Ritesh K. MadanJunyi Li
    • Ritesh K. MadanJunyi Li
    • H04J3/00
    • H04W28/26H04W72/0446
    • A wireless communications device supporting peer-to-peer communications acquires peer-to-peer communications resources for an extended period of time. In some embodiments, a base station assigns the resources to the device, while in other embodiments, the device reserves, e.g., self-assigns peer-to-peer communications resources for an extended period of time. The wireless communications device decides that it will not be using an acquired peer-to-peer communications resources, e.g., a particular acquired peer-to-peer traffic segment. The wireless communications device transmits a resource availability indicator indicating that it will not be using the particular peer-to-peer communications resource. Another wireless communications device, which detects the resource availability indicator, may use the peer-to-peer communications resource which is not be used by the device to which it is assigned.
    • 支持对等通信的无线通信设备在长时间内获取点对点通信资源。 在一些实施例中,基站将资源分配给设备,而在其他实施例中,设备预留(例如)在长时间段内自分配对等通信资源。 无线通信设备决定它不会使用所获取的对等通信资源,例如特定获取的对等业务段。 无线通信设备发送指示其将不使用特定对等通信资源的资源可用性指示符。 检测资源可用性指示符的另一无线通信设备可以使用未被所分配的设备使用的对等通信资源。
    • 5. 发明申请
    • METHOD AND SYSTEM FOR INTER-CELL INTERFERENCE CANCELLATION
    • 用于细胞间干扰消除的方法和系统
    • US20100278216A1
    • 2010-11-04
    • US12435085
    • 2009-05-04
    • Farrokh AbrishamkarYingqun YuWenjun Li
    • Farrokh AbrishamkarYingqun YuWenjun Li
    • H04B1/707H04B15/00
    • H04B1/7107
    • Systems and methods for inter-cell interference cancellation are provided. In one aspect of the disclosure, an apparatus is provided. The apparatus comprises a cell computation unit configured to compute receive chips for a first interfering cell and a subtraction unit configured to remove the computed receive chips for the first interfering cell from received chips at a receiver. The apparatus further comprises a processing unit configured to process the received chips with the computed receive chips for the first interfering cell removed into received symbols and a detection unit configured to detect user symbols for a target cell from the received symbols.
    • 提供了小区间干扰消除的系统和方法。 在本公开的一个方面,提供一种装置。 所述装置包括:单元计算单元,被配置为计算第一干扰小区的接收码片;以及减法单元,被配置为从所述接收机的接收码片中去除所计算出的所述第一干扰小区的接收码片。 所述装置还包括:处理单元,被配置为处理所接收的码片,所计算出的接收码片用于将所述第一干扰信元移除到接收符号中;以及检测单元,被配置为从所接收的符号检测目标小区的用户符号。
    • 6. 发明申请
    • 8-POINT TRANSFORM FOR MEDIA DATA CODING
    • 用于媒体数据编码的8点变换
    • US20130121406A1
    • 2013-05-16
    • US13736270
    • 2013-01-08
    • Qualcomm Incorporated
    • Yuriy ReznikRajan Laxman JoshiMarta Karczewicz
    • H04N7/26
    • H04N19/00812G06F17/147H04N19/42H04N19/45H04N19/61H04N19/625
    • In general, techniques are described for implementing an 8-point discrete cosine transform (DCT). An apparatus comprising an 8-point discrete cosine transform (DCT) hardware unit may implement these techniques to transform media data from a spatial domain to a frequency domain. The 8-point DCT hardware unit includes an even portion comprising factors A, B that are related to a first scaled factor (μ) in accordance with a first relationship. The 8-point DCT hardware unit also includes an odd portion comprising third, fourth, fifth and sixth internal factors (G, D, E, Z) that are related to a second scaled factor (η) in accordance with a second relationship. The first relationship relates the first scaled factor to the first and second internal factors. The second relationship relates the second scaled factor to the third internal factor and a fourth internal factor, as well as, the fifth internal factor and a sixth internal factor.
    • 通常,描述了用于实现8点离散余弦变换(DCT)的技术。 包括8点离散余弦变换(DCT)硬件单元的装置可以实施这些技术以将媒体数据从空间域转换到频域。 8点DCT硬件单元包括与根据第一关系的第一缩放因子(mu)相关的因子A,B的偶数部分。 8点DCT硬件单元还包括与根据第二关系的第二缩放因子(eta)相关的第三,第四,第五和第六内部因素(G,D,E,Z)的奇数部分。 第一个关系将第一个缩放因子与第一个和第二个内部因素相关联。 第二个关系将第二个缩放因子与第三个内在因素和第四个内在因素以及第五个内在因素和第六个内在因素联系起来。
    • 7. 发明申请
    • SYNCHRONOUS INTERFACE FOR MULTI-RADIO COEXISTENCE MANAGER
    • 用于多无线电共享管理器的同步接口
    • US20110026432A1
    • 2011-02-03
    • US12749214
    • 2010-03-29
    • Hans Georg GruberRichard Dominic WietfeldtGeorge Chrisikos
    • Hans Georg GruberRichard Dominic WietfeldtGeorge Chrisikos
    • H04L12/28
    • H04L12/417H04W72/1215H04W88/06
    • Systems and methodologies are described herein that facilitate a synchronous bus architecture for multi-radio coexistence associated with a wireless device. As described herein, a system of buses operating in a synchronous manner, combined with optional on-chip and/or other supplemental buses, can be utilized to couple respective radios and/or other related endpoints to a coexistence management platform, thereby facilitating management of coexistence between multiple radios in a unified and scalable manner. As further described herein, communication between a coexistence manager and its respective managed endpoints can be facilitated through the use of a single bus or multiple buses (e.g., external buses, on-chip and/or other internal buses, etc.) that can operate concurrently and/or in an otherwise cooperative manner to facilitate expedited conveyance of radio event notifications and their corresponding responses.
    • 本文描述了促进与无线设备相关联的多无线电共存的同步总线架构的系统和方法。 如本文所述,可以利用以同步方式操作的总线系统,与可选的片上和/或其他补充总线组合,将相应的无线电和/或其他相关端点耦合到共存管理平台,从而便于管理 多台无线电之间以统一和可扩展的方式共存。 如本文进一步所述,可以通过使用可以操作的单总线或多个总线(例如,外部总线,片上和/或其他内部总线等)来促进共存管理器及其相应的受管端点之间的通信 同时和/或以其他协作的方式促进无线电事件通知的快速传送及其相应的响应。