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    • 1. 发明申请
    • RADIO ACCESS NETWORK AS A SERVICE FOR A WIRELESS NETWORK
    • 无线接入网络作为无线网络的服务
    • WO2018058290A1
    • 2018-04-05
    • PCT/CN2016/100305
    • 2016-09-27
    • INTEL CORPORATIONHUANG, MinYANG, FengZHANG, Xu
    • HUANG, MinYANG, FengZHANG, Xu
    • H04W4/00
    • H04W24/02H04W84/042
    • Particular embodiments described herein provide for an electronic device that can be configured to identify a resource package, where the resource package includes standardized functions for use in communication on a radio access network. The identified resource package with one or more APIs to create a customized resource package, where the customized resource package includes customized functions for use in communication on a radio access network for a customized service, where the customized resource package is communicated on the network as a standardized package. In an example, the customized resource package includes a standard API and an overwriting API and the standard API follows standardized procedures to implement RAN services while the overwriting API causes non-standardized handling to implement RAN services
    • 这里描述的特定实施例提供了可以被配置为识别资源包的电子设备,其中资源包包括用于在无线电接入网络上通信的标准化功能。 所标识的资源包具有一个或多个API以创建定制资源包,其中定制资源包包括用于在无线电接入网络上进行通信以用于定制服务的定制功能,其中定制资源包在网络上作为 标准化套餐。 在一个示例中,定制资源包包括标准API和覆盖API,并且标准API遵循用于实现RAN服务的标准化过程,而覆盖API导致非标准化处理来实现RAN服务
    • 3. 发明申请
    • METHOD AND DEVICE FOR FREQUENCY SPECTRUM SHARE IN DIFFERENT WIRELESS COMMUNICATION SYSTEMS
    • 不同无线通信系统中频率分布的方法和设备
    • WO2011082526A8
    • 2012-06-07
    • PCT/CN2010070052
    • 2010-01-07
    • ALCATEL LUCENT SHANGHAI BELLALCATEL LUCENTQIU JIGANGYANG FENGXU BINYANG
    • QIU JIGANGYANG FENGXU BINYANG
    • H04W28/00
    • H04W16/14
    • The present invention discloses a method and a device for frequency spectrum share between a base station and at least one of other base stations. All of the base stations belong to different wireless communication systems separately. The method includes: a. the base station and at least one of other base stations select a time window separately from multiple reserved time windows to prepare for sending reservation signal and at least one of other reservation signals, wherein the reservation signal contains priority level information of the base station, and the at least one of other reservation signals contains priority level information of at least one of other base stations; b. the base station obtains the priority level information contained in the at least one of other reservation signals, and compares the priority level contained in the reservation signal with the priority level contained in the at least one of other reservation signals; c. if the priority level contained in the reservation signal is higher than the priority level contained in the at least one of other reservation signals, the base station sends a concomitant signaling message in a concomitant signaling sending time segment, which is after the multiple reserved time windows; otherwise, the base station pauses the sending of the concomitant signaling message.
    • 本发明公开了一种在基站与至少一个其他基站之间频谱共享的方法和装置。 所有基站分别属于不同的无线通信系统。 该方法包括:a。 基站和其他基站中的至少一个基站与多个保留时间窗口分开选择时间窗口,以准备发送预约信号和其他预约信号中的至少一个,其中预约信号包含基站的优先级信息,以及 其他预约信号中的至少一个包含其他基站中的至少一个的优先级信息; 湾 基站获取包含在其它预约信号中的至少一个的优先级信息,并且将预约信号中包含的优先级与包含在其它预约信号中的至少一个中的优先级进行比较; C。 如果预约信号中包含的优先级高于包含在其他预定信号中的至少一个的优先级,则基站在伴随的信令发送时间段中发送伴随的信令消息,该时间段在多个保留时间窗 ; 否则,基站暂停发送伴随的信令消息。
    • 5. 发明申请
    • ORGANIC/INORGANIC NANOCOMPOSITES OBTAINED BY EXTRUSION
    • 有机/无机纳米复合材料
    • WO2002096982A1
    • 2002-12-05
    • PCT/US2002/017250
    • 2002-05-31
    • NELSON, Gordon, L.YANG, Feng
    • NELSON, Gordon, L.YANG, Feng
    • C08J3/20
    • C08K9/04B82Y30/00C08J3/212C08J3/226C08J5/005C08J2325/06C08J2333/12C08J2425/00C08J2433/00
    • Organic/inorganic nanocomposites and methods for their preparation are disclosed. In one embodiment, the method comprises the steps of providing an organic/inorganic concentrate and processing the concentrate with a polymer resin. In a preferred embodiment the organic/inorganic concentrate and polymer resin are processed by extrusion using a single-screw extruder. In another embodiment, the method further comprises surface modifying an inorganic additive, mixing the modified additive with a polymer solution to produce an organic/inorganic solution, and removing solvent from the organic/inorganic solution to produce the organic/inorganic concentrate. Processing of the organic/inorganic concentrate with a polymer resin produces a homogeneous nanocomposite with superior mechanical and thermal properties.
    • 公开了有机/无机纳米复合材料及其制备方法。 在一个实施方案中,该方法包括提供有机/无机浓缩物并用聚合物树脂处理浓缩物的步骤。 在优选的实施方案中,使用单螺杆挤出机挤出加工有机/无机浓缩物和聚合物树脂。 在另一个实施方案中,该方法还包括对无机添加剂进行表面改性,将改性添加剂与聚合物溶液混合以产生有机/无机溶液,以及从有机/无机溶液中除去溶剂以产生有机/无机浓缩物。 用聚合物树脂处理有机/无机浓缩物产生具有优异机械和热性能的均匀的纳米复合材料。
    • 8. 发明申请
    • METHOD AND DEVICE FOR REDUCING INTERFERENCE AMONG FEMTOCELLS IN AN ACCESS DEVICE OF A FEMTOCELL
    • 用于在FEMTOCELL的访问设备中减少有限元干扰的方法和装置
    • WO2011117729A3
    • 2011-12-22
    • PCT/IB2011000929
    • 2011-03-25
    • ALCATEL LUCENTYANG FENGQIU JIGANG
    • YANG FENGQIU JIGANG
    • H04W16/10H04W16/14H04W16/18H04W48/02
    • H04W16/10H04W24/02H04W84/045
    • The present invention provides a method for reducing interference among Femtocells in a first access device of a first Femtocell, comprising the following steps: a receiving step, wherein said first access device receives a first wireless signal periodically transmitted by a second access device of a second Femtocell, and said first wireless signal comprises characteristic information of said second access device; a judging step, wherein said first access device judges whether the level of said first wireless signal exceeds a first pre-determined threshold and interferes at least one user terminal in said first Femtocell; a first executing step, wherein if the level of said first wireless signal exceeds said pre-determined threshold and interferes said at least one user terminal in said first Femtocell, said first access device creates a cooperative working mode between said first access device and said second access device by interacting with said second access device, so as to reduce interference between said first Femtocell and said second Femtocell.
    • 本发明提供一种降低第一毫微微蜂窝小区的第一接入设备中的蜂窝型小区之间的干扰的方法,包括以下步骤:接收步骤,其中所述第一接入设备接收由第二接入设备周期性地发送的第二无线信号, 毫微微蜂窝,并且所述第一无线信号包括所述第二接入设备的特征信息; 判断步骤,其中所述第一接入设备判断所述第一无线信号的电平是否超过第一预定阈值并干扰所述第一毫微微蜂窝中的至少一个用户终端; 第一执行步骤,其中如果所述第一无线信号的电平超过所述预定阈值并且干扰所述第一毫微微蜂窝中的所述至少一个用户终端,则所述第一接入设备在所述第一接入设备和所述第二接入设备之间创建协作工作模式 接入设备,通过与所述第二接入设备交互,以便减少所述第一毫微微蜂窝小区与所述第二毫微微蜂窝小区之间的干扰。
    • 9. 发明申请
    • SHARED COOPERATIVE SPECTRUM SENSING METHOD, SENSING NODES AND FUSION CENTER IN COGNITIVE RADIO NETWORKS
    • 认知无线电网络中共享合作频谱感应方法,感知节点和融合中心
    • WO2011121443A2
    • 2011-10-06
    • PCT/IB2011000928
    • 2011-03-25
    • ALCATEL LUCENTYANG FENGQIU JIGANG
    • YANG FENGQIU JIGANG
    • H04W72/04H04W16/14
    • H04W72/085H04W16/14H04W72/0413H04W72/0453
    • A shared cooperative spectrum sensing method, local sensing nodes and fusion center in cognitive radio networks are provided in the embodiments of the present invention. According to the present invention, the sensing information collected from the sensing nodes in different cognitive radio networks is shared in shared cooperative spectrum sensing. At the fusion center, the spectrum decision is made based on the sensing information not only from its own sensing nodes but also from the adjacent sensing nodes who share their sensing information. Sharing sensing information among co-located cognitive radio networks is equivalent to extending the number of cooperative sensing nodes but it does not cause extra sensing overhead. Thus, the overall sensing performance is significantly improved.
    • 在本发明的实施例中提供共享协作频谱感知方法,认知无线电网络中的局部感知节点和融合中心。 根据本发明,在共享协作频谱感知中共享从不同认知无线电网络中的感测节点收集的感测信息。 在融合中心,频谱决定是基于不仅来自其自身感测节点的感测信息,而且来自共享其感测信息的相邻感测节点。 共同认知无线电网络之间共享感测信息等同于扩展协作感知节点的数量,但不会导致额外的感知开销。 因此,整体感测性能得到显着提高。