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    • 41. 发明申请
    • LOCAL ROUTING PROCESSING METHOD, DEVICE AND COMMUNICATION SYSTEM
    • 本地路由处理方法,设备和通信系统
    • WO2011157124A3
    • 2012-05-03
    • PCT/CN2011074972
    • 2011-05-31
    • HUAWEI TECH CO LTDWANG YANHU WEIHUA
    • WANG YANHU WEIHUA
    • H04W8/08
    • H04W40/34
    • A local routing processing method, device and communication system are provided in the embodiments of the present invention. The local routing processing method includes: a local routing processing device detecting bearer contexts of two User Equipments (UEs) contain the same session identification; the local routing processing device implementing local routing processing to traffic flows corresponding to the session identification, wherein the session identification is distributed by an application function entity. With the embodiments of the present invention, the traffic flows of the two UEs can be directly looped back locally wherein the two UEs are in the same base station or the same Serving Gateway (SGW), or are in the same anchor gateway but in the different SGWs, while without being transmitted back to the anchor gateway and being looped back through IP Multimedia Subsystem (IMS) network routing, thus the backhaul transport network pressure of the core network is reduced, as well as the transmission delay of traffic flows is decreased, and the service quality of the network is enhanced.
    • 本发明的实施例提供了本地路由处理方法,设备和通信系统。 本地路由处理方法包括:本地路由处理设备检测包含相同会话标识的两个用户设备(UE)的承载上下文; 所述本地路由处理设备对与所述会话标识相对应的业务流实施本地路由处理,其中所述会话标识由应用功能实体分发。 利用本发明的实施例,两个UE的业务流可以直接环回到本地,其中两个UE在相同的基站或相同的服务网关(SGW)中,或者在相同的锚网关中,但是在 不同的SGW,而不被传送回锚网关,并通过IP多媒体子系统(IMS)网络路由环回,从而降低了核心网的回程传输网络压力,降低了业务流的传输延迟 ,网络的服务质量得到提升。
    • 43. 发明申请
    • SUPPORT ARRANGEMENT
    • 支持安排
    • WO2010034993A3
    • 2010-09-02
    • PCT/GB2009002275
    • 2009-09-23
    • UNIV NOTTINGHAMGINDY NABILWANG YANDAINE MARKWALKER KEVIN
    • GINDY NABILWANG YANDAINE MARKWALKER KEVIN
    • B25B1/02B25B1/00
    • B25B1/2421
    • Support engagement arrangements (100, 200, 1100, 1200, 2100, 3100, 3200) for utilisation in vices and presentation of components is a necessity, it is known to provide arrangements in which an array of engagement elements (2, 54, 64, 82, 92, 112, 902, 1401, 2003) are presented such that the elements can be displaced in order that ends define a reciprocal profile to a component (7, 57, 67, 87, 97, 117, 407, 1424, 2000). Retention of that reciprocal profile with prior arrangements is difficult. By providing the engagement elements supported upon a volume of particles (6, 56, 65, 86, 96, 116, 406, 806, 1402, 2006) which can act as a fluid medium relative displacement between the engaged elements can be achieved. Once displacement into a reciprocal profile is achieved the volume of particles is locked by actuator (4, 84, 94, 114, 404, 804, 904, 2007) pressure and therefore in support of a component resistance to vibration and other factors is significantly enhanced. Additionally, side clamping (204, 2005) traditionally used with regard to engagement element arrays can be added to further reinforce retention of the reciprocal profiling.
    • 必要的是,为了利用部件的使用和呈现部件的支撑接合装置(100,200,1100,1200,2100,3100,3200)是已知的,提供一种布置,其中一组接合元件(2,54,64, 82,92,112,902,1401,2003),使得这些元件可以移位,以使端部限定到部件的相互轮廓(7,57,67,87,97,117,407,1424,2000) )。 以前的安排保留这种互惠简介是困难的。 通过提供支撑在一定体积的颗粒(6,56,65,66,96,116,406,806,1402,2006)上的接合元件可以实现在接合元件之间的相对位移的流体介质。 一旦实现了位移到相互轮廓中,颗粒的体积被致动器(4,84,94,114,404,804,904,2007)的压力锁定,因此支撑部件对振动的阻力和其他因素显着增强 。 此外,可以添加传统上关于接合元件阵列使用的侧夹(204,2005)以进一步增强相互轮廓的保留。