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    • 2. 发明申请
    • Node and Method For AoIP Address Change
    • AoIP地址更改的节点和方法
    • US20130148633A1
    • 2013-06-13
    • US13817205
    • 2010-08-17
    • Per-Ove EkmanPaul Schliwa-Bertling
    • Per-Ove EkmanPaul Schliwa-Bertling
    • H04W36/00
    • H04W36/0011H04L29/12311H04L47/122H04L47/14H04L61/2084H04L65/1026H04L65/1036H04L65/608H04W36/02H04W92/045
    • A first node (110, 115, 135, 200) for an IP connection with a second node over an A interface between a Access Network (101) and a Circuit Switched Core Network (122), said IP connection comprising an RTP and an RTCP connection. The first node has an RTP address comprising an IP address and a UDP port in the RTP connection and can change its RTP address and signal said change by a message to the second node (200, 135, 110, 115) over the RTCP connection and receive an ACK message. The first node is arranged to, following said change of RTP address, receive user plane data over the RTP connection from the second node at its changed and unchanged RTP address and to initiate an Internal handover with Mobile Switching Centre support if said ACK message from the second node is not received within a time limit.
    • 用于通过接入网络(101)和电路交换核心网络(122)之间的A接口与第二节点进行IP连接的第一节点(110,115,135,200),所述IP连接包括RTP和RTCP 连接。 第一节点具有包括RTP连接中的IP地址和UDP端口的RTP地址,并且可以通过RTCP连接改变其RTP地址并将所述消息通过消息发送到第二节点(200,135,110,115),并且 接收ACK消息。 第一节点被布置为,在所述RTP地址的改变之后,通过RTP连接从其第二节点以其改变和不变的RTP地址接收用户平面数据,并且如果来自所述RTP地址的所述ACK消息,则启动具有移动交换中心支持的内部切换 第二个节点在一段时间内没有收到。
    • 3. 发明授权
    • Codec rate adaptation for radio channel rate change
    • 无线电频率变化的编解码率适应
    • US08200215B2
    • 2012-06-12
    • US12607404
    • 2009-10-28
    • Paul Schliwa-BertlingPer-Ove Ekman
    • Paul Schliwa-BertlingPer-Ove Ekman
    • H04Q7/20
    • C12N5/0686C12N2500/92C12N2510/02
    • Speech signals to be sent between a first node and a second node via a wireless communication system are Adaptive Multi-Rate (AMR) encoded. A need to change the first node's first data transmission rate over a radio interface to a second different data transmission rate is determined. A new AMR source bit rate is then determined for both nodes. Information is sent to the second node, in advance of changing the data transmission rate over the radio interface, requesting the second node to change towards the new AMR source bit rate. After a predetermined time period sufficient for the second node to change from the current AMR source bit rate to the new AMR source bit rate expires or after the second node indicates a change to the new AMR source bit rate, the first node starts transmitting at the second data transmission rate over the radio interface.
    • 经由无线通信系统在第一节点和第二节点之间发送的语音信号是自适应多速率(AMR)编码的。 确定通过无线电接口将第一节点的第一数据传输速率改变为第二不同数据传输速率的需要。 然后为两个节点确定新的AMR源比特率。 在通过无线电接口改变数据传输速率之前,向第二节点发送信息,请求第二节点向新的AMR源比特率改变。 在足以使第二节点从当前AMR源比特率改变到新的AMR源比特率的预定时间段到期之后或在第二节点指示对新的AMR源比特率的改变之后,第一节点开始在 无线接口的第二数据传输速率。
    • 4. 发明授权
    • Local data bi-casting between core network and radio access
    • US09674876B2
    • 2017-06-06
    • US13123365
    • 2011-01-19
    • Philip HodgesKarl HellwigPaul Schliwa-Bertling
    • Philip HodgesKarl HellwigPaul Schliwa-Bertling
    • H04W76/02H04W88/16
    • H04W76/02H04W76/10H04W88/16
    • The invention relates to a method for setting up a connection between an originating mobile entity and a terminating mobile entity connecting to the same radio access network of a mobile communications network, the radio access network accessing a core network through a serving access gateway serving one of the two mobile entities the method performed by the serving access gateway comprising the steps of receiving a connection setup message for establishing the connection between the originating and the terminating mobile entity, wherein the connection setup message transmitted along a signalling path in the core network comprises an information element storing media plane access needs of at least one network node in the signalling path of the core network, wherein the media plane access needs indicate the needs of a network node in the signal path of the core network to access a media plane of the connection to be set up. Additionally it is checked whether any of the network nodes in the signalling path of the core network needs access to the media plane of said connection to be set up, wherein, if none of the network nodes needs access to the media plane and if the serving access gateway needs access to the media plane at least the following steps are carried out: a media gateway that is handling a media stream of the serving access gateway is instructed to provide an uplink endpoint for the connection to the originating mobile entity and an uplink endpoint for the connection to the terminating mobile entity for the connection to be set up, and the radio access network is informed to transmit the media stream of the originating and the terminating mobile entity to the media gateway of the serving access gateway needing access to the media plane.
    • 5. 发明授权
    • Assignment and handover in a radio communication network
    • 无线电通信网络中的分配和切换
    • US09439109B2
    • 2016-09-06
    • US12809477
    • 2008-12-19
    • Dirk KampmannKarl HellwigPaul Schliwa-Bertling
    • Dirk KampmannKarl HellwigPaul Schliwa-Bertling
    • H04W4/00H04W36/00H04W72/04H04W76/04H04W92/14
    • H04W36/0072H04W72/0413H04W72/042H04W72/0433H04W72/0446H04W76/22H04W92/14
    • A network entity for a radio communication network includes a processing unit which causes a first resource and a second resource for a terrestrial interface of the radio network to be seized, where the first resource is distinct and different from the second resource. The entity includes a network interface through which a handover request or an assignment request message identifying the first and the second resource is sent. A network entity for a radio communication network includes a network interface which receives a handover request message or an assignment request message identifying a first resource and a second resource. The first resource is distinct and different from the second resource. The entity includes a processing unit that selects one of the first and second resources, allocates a radio channel associated with the handover or assignment, selects a bearer for a terrestrial interface and seizes resources for the interface.
    • 用于无线电通信网络的网络实体包括处理单元,该处理单元使第一资源和第二资源用于无线电网络的地面接口被占用,其中第一资源是不同于第二资源的。 该实体包括网络接口,通过该网络接口发送识别第一和第二资源的切换请求或分配请求消息。 用于无线电通信网络的网络实体包括接收切换请求消息的网络接口或识别第一资源和第二资源的分配请求消息。 第一个资源与第二个资源是截然不同的。 实体包括选择第一和第二资源之一的处理单元,分配与切换或分配相关联的无线电信道,为地面接口选择承载并占用用于接口的资源。
    • 6. 发明授权
    • Common control channel access
    • 公共控制通道访问
    • US09264936B2
    • 2016-02-16
    • US13878474
    • 2011-06-08
    • Daniel WidellJens BergqvistAndreas BergströmJohn Walter DiachinaPaul Schliwa-Bertling
    • Daniel WidellJens BergqvistAndreas BergströmJohn Walter DiachinaPaul Schliwa-Bertling
    • H04W4/00H04W28/02H04W74/08
    • H04W28/0289H04W74/085
    • A Mobile Station, MS (115), for a cellular communications network (100), arranged to be camped on one of a plurality of k available Common Control Channels, CCCHs, in a cell (105) in the cellular communications network (100), the MS (115) also being arranged to make successive attempts at uplink CCCH access until the MS (115) gains CCCH access. The MS (115) is arranged to make CCCH access attempt number i on CCCH number x, where x is in the range of 1 . . . k, with x determined by a function in the MS (115). Also, a network node, (110), for a cellular communications network, arranged to transmit System Information messages, to the MSs (115) in a cell, and arranged to insert an Information Element, an IE, in an SI message, which IE defines which CCCHs in the cell that an MS (115) may use for uplink CCCH access attempts.
    • 一种用于蜂窝通信网络(100)的移动台MS(115),被布置为驻留在蜂窝通信网络(100)中的小区(105)中的多个k个可用公共控制信道CCCH中的一个上, ,MS(115)还被布置成在上行链路CCCH接入期间进行连续尝试,直到MS(115)获得CCCH接入。 MS(115)被配置为使CCCH接入尝试次数为CCCH号码x,其中x在1的范围内。 。 。 k,其中x由MS(115)中的函数确定。 此外,用于蜂窝通信网络的网络节点(110)被布置为向小区中的MS(115)发送系统信息消息,并且被布置为在SI消息中插入信息元素,IE,其中 IE定义了MS(115)可以用于上行链路CCCH接入尝试的小区中的哪些CCCH。
    • 10. 发明申请
    • QUALITY OF SERVICE HANDLING IN PACKET CORE AND RADIO NETWORKS
    • 服务质量在分组核心和无线电网络中的处理
    • US20140029435A1
    • 2014-01-30
    • US14009941
    • 2011-04-07
    • Hans MattssonReiner LudwigPaul Schliwa-Bertling
    • Hans MattssonReiner LudwigPaul Schliwa-Bertling
    • H04W28/02
    • H04W28/0252H04W76/12
    • There is provided a serving node S) comprising processing means (CTRL_U1; MEM—1) and an interface unit (INT_U1) and a method for such a serving node, the serving node being adapted for participating in a network requested secondary PDP context activation procedure, the processing means being adapted for: —receiving (91) an initiate PDP context activation request signal from a gateway node (G). The serving node is also adapted for—determining (92A) whether the user entity supports network requested dedicated bearers; and if not the case; —without engaging in signalling with the user entity, transmitting (93) an initiate PDP context activation response signal indicating the network requested secondary PDP context activation has been accepted; and—transmitting (95) a create PDP context request signal to the gateway node. The Serving node may be adapted to further: if interacting with a GERAN radio node; —receiving (96) a create PDP context response signal from the gateway node (G), with a negotiated quality of service; —transmitting (97) a create BSS packet flow context request signal to the user entity, optionally comprising an indication, that the user entity supports no network requested dedicated bearer. Moreover, there is provided a radio node and a method for a radio node.
    • 提供了包括处理装置(CTRL_U1; MEM-1)和接口单元(INT_U1)的服务节点S和用于这种服务节点的方法,服务节点适于参与网络请求的辅助PDP上下文激活过程 所述处理装置适于:从网关节点(G)接收(91)发起的PDP上下文激活请求信号。 服务节点还适于确定(92A)用户实体是否支持网络请求的专用承载; 如果不是这样的话; - 不用与用户实体进行信号通信,发送(93)指示所请求的网络请求的辅助PDP上下文激活的发起PDP上下文激活响应信号已被接受; 并向网关节点发送(95)创建PDP上下文请求信号。 服务节点可以适于进一步:如果与GERAN无线电节点交互; - 接收(96)从所述网关节点(G)创建PDP上下文响应信号,具有协商的服务质量; - 向用户实体(97)创建BSS分组流上下文请求信号,可选地包括用户实体不支持网络请求的专用承载的指示。 此外,提供了一种用于无线电节点的无线电节点和方法。