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    • 7. 发明申请
    • Network Node and Method for Managing Radio Resources Dedicated to Beacon Signalling for D2D Discovery
    • 用于管理专用于D2D发现的信标信号的无线电资源的网络节点和方法
    • US20150271656A1
    • 2015-09-24
    • US14427556
    • 2012-09-13
    • Joachim SachsMikael PrytzYngve Selén
    • Joachim SachsMikael PrytzYngve Selén
    • H04W8/00H04W40/24H04W76/02H04W72/08H04W48/08
    • H04W8/005H04W40/244H04W48/08H04W72/085H04W76/14H04W84/042
    • A network node (110) and a method therein for managing radio, resources are disclosed. The radio resources are dedicated for beacon (121, 122) signaling, fey a first device; (131) and a second device (132), in conjunction with device-to-device, “D2D”, discovery. The first device: (131) is stationary and the second device (132) is non-stationary. The network node (110) selects (202) a first and a second set of radio resources out of the radio resources. The first and second sets are dedicated for beacon signaling by the first device (131) and the second device (132), respectively. The first set of radio resources Is non-overlapping with the second set of radio resources. Then the network node (110) schedules (203) a specific radio resource of the first set of radio resources to the first device (131). Next, the network node (110) sends (204) information about the scheduled specific radio resource to the first device (131). The network node (110) further sends (205) information about the second set of radio resources to the second device (132). In this manner, the second device (132) restricts Us radio resources usable for beacon signaling to the second set of radio resources.
    • 公开了一种用于管理无线电资源的网络节点(110)及其方法。 无线电资源专用于信标(121,122)信令,第一设备; (131)和第二设备(132),与设备到设备“D2D”的发现相结合。 第一装置(131)是静止的,并且第二装置(132)是非静止的。 网络节点(110)从无线电资源中选择(202)第一和第二组无线电资源。 第一和第二组分别专用于第一设备(131)和第二设备(132)的信标信令。 第一组无线电资源与第二组无线电资源不重叠。 然后,网络节点(110)将第一组无线电资源的特定无线电资源调度(203)到第一设备(131)。 接下来,网络节点(110)向第一设备(131)发送(204)关于调度的特定无线电资源的信息。 网络节点(110)还向第二设备(132)发送关于第二组无线电资源的信息(205)。 以这种方式,第二设备(132)将可用于信标信令的Us无线电资源限制到第二组无线电资源。
    • 8. 发明授权
    • Primary channel estimation
    • 主要信道估计
    • US09025523B2
    • 2015-05-05
    • US13510970
    • 2011-05-30
    • Yngve SelénRobert BaldemairJoachim Sachs
    • Yngve SelénRobert BaldemairJoachim Sachs
    • H04W92/10H04W16/14H04W88/04H04W72/04H04B15/00H04W52/04H04L5/00H04L25/02H04W52/24
    • H04L5/0032H04L5/0048H04L5/0062H04L25/0224H04W16/14H04W52/243H04W72/04
    • Some example embodiments may be directed towards a method in a network node, which may be comprised in a Radio Network, for transmitting a combined wireless communication signal. The combined wireless communication signal may comprise a primary and a secondary signal component. The method may comprise transmitting to an user equipment the secondary signal component according to a secondary transmission scheme such that the secondary signal component at least partially overlaps with the primary signal component with respect to a signal domain. The method may also comprise simultaneously, suppressing at least one portion of the secondary signal component during a transmission of the primary signal component.Some example embodiments may be directed towards a method in an user equipment, which may be comprised in a Radio Network, for estimating the combined communication channel. The method may comprise receiving the combined wireless communication signal. The primary and secondary signal components may be received according to a primary and secondary transmission scheme, associated with a primary and secondary domain, respectively. The method may further comprise estimating the primary channel component when the secondary signal component is suppressed.
    • 一些示例性实施例可以针对可以包括在无线电网络中的用于发送组合的无线通信信号的网络节点中的方法。 组合的无线通信信号可以包括主信号和次信号分量。 该方法可以包括根据次级传输方案向用户设备发送次级信号分量,使得辅助信号分量相对于信号域至少部分地与主信号分量重叠。 该方法还可以同时包括在主信号分量的传输期间抑制次信号分量的至少一部分。 一些示例性实施例可以针对可以包括在无线电网络中的用户设备中用于估计组合通信信道的方法。 该方法可以包括接收组合的无线通信信号。 可以分别根据主要和次要传输方案来接收主信号分量和次信号分量。 该方法还可以包括当抑制次级信号分量时估计主信道分量。
    • 10. 发明申请
    • TELECOMMUNICATION SYSTEMS WITH DISCONTINUOUS RECEPTION
    • 具有不连续接收的电信系统
    • US20150109979A1
    • 2015-04-23
    • US14398699
    • 2012-05-03
    • György MiklósJoachim SachsHenning Wiemann
    • György MiklósJoachim SachsHenning Wiemann
    • H04W76/04
    • H04W76/048H04W36/36H04W76/28
    • A method aims at controlling parameters used by communication terminals of a telecommunication system which enables discontinuous reception. The discontinuous reception involves DRX cycles during each one of which a communication terminal wakes up at least once to monitor a downlink control channel. The telecommunication system enables the use of DRX cycles of different lengths. The method includes a determining procedure (s10) comprising determining, on a per communication terminal basis, whether the communication terminal is eligible to rely on a terminal-controlled mobility procedure, wherein determining is based on at least one characteristic of the communication terminal. The method also includes a setting procedure (s20) comprising, at least for one of the possible outcomes of the determining procedure (s10), setting one or more parameters on the communication terminal accordingly.
    • 一种方法旨在控制能够进行不连续接收的电信系统的通信终端使用的参数。 不连续接收涉及DRX周期,其中每个通信终端至少唤醒一次以监视下行链路控制信道。 电信系统使得能够使用不同长度的DRX周期。 该方法包括确定过程(s10),其包括在每个通信终端的基础上确定通信终端是否有资格依赖于终端控制的移动性过程,其中确定基于通信终端的至少一个特性。 该方法还包括至少包括确定过程的可能结果之一(s10)的设置过程(s20),相应地在通信终端上设置一个或多个参数。