会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 11. 发明申请
    • Broadcast AMD Multicast On High Speed Downlink Channels
    • 在高速下行链路信道上广播AMD组播
    • US20090207771A1
    • 2009-08-20
    • US12307533
    • 2006-07-04
    • Jan LindskogAnders Ranheim
    • Jan LindskogAnders Ranheim
    • H04H20/71
    • H04L12/1868H04L12/189H04W48/12H04W72/005
    • A high speed downlink packet access base station (HSPDA Node B) and a method therefore working in acknowledged mode (AM), the base station being adapted for unicast transmission on a physical downlink shared channel (HS-DSCH), by preceding announcement on a shared control channel (HS-SCCH) which shared control channel may be decoded by a given user entity using its own identity (UE-ID), each user entity (UE) being adapted for transmitting an acknowledge (ACK) or non-acknowledge (NACK) message pertaining to the reception of the given transmission on an uplink dedicated physical control channel (HS-DPCCH) pertaining to a given HARQ process of a given individual user entity. The base station is performing multicast transmissions (11, 401) on the physical downlink shared channel (HS-DSCH) by preceding announcement on the shared control channel (HS-SCCH) coded with a multicast identity (MU-ID) of a reserved address space, which downlink shared channel (HS-SCCH) may be decoded simultaneously by a plurality of user entities, wherein each user entity is using the multicast identity (MU-ID) instead of the user entity's respective user identity. A user entity and a method therefore have moreover been provided.
    • 一种高速下行链路分组接入基站(HSPDA NodeB)和一种在确认模式(AM)下工作的方法,该基站适用于物理下行链路共享信道(HS-DSCH)上的单播传输, 共享控制信道的共享控制信道(HS-SCCH)可以由给定的用户实体使用其自己的身份(UE-ID)解码,每个用户实体(UE)适于发送确认(ACK)或非确认( NACK)消息,其涉及与给定个体用户实体的给定HARQ进程相关的上行链路专用物理控制信道(HS-DPCCH)上的给定传输的接收。 基站通过在由保留地址的多播身份(MU-ID)编码的共享控制信道(HS-SCCH)上进行前一通知来执行物理下行链路共享信道(HS-DSCH)上的多播传输(11,401) 空间,哪个下行链路共享信道(HS-SCCH)可以由多个用户实体同时解码,其中每个用户实体正在使用多播身份(MU-ID)而不是用户实体的相应用户身份。 此外,还提供了用户实体和方法。
    • 13. 发明授权
    • Allocation and priority handling of uplink and downlink resources
    • 上行链路和下行链路资源的分配和优先级处理
    • US08634840B2
    • 2014-01-21
    • US12867328
    • 2008-02-12
    • Jan LindskogAndreas AnderssonPär AnkelAnders Ranheim
    • Jan LindskogAndreas AnderssonPär AnkelAnders Ranheim
    • H04W72/00H04B7/212
    • H04W72/1242H04W72/1273
    • A telecommunication system comprises a radio network controller (RNC), and a Node-B (NB) for enabling wireless communication with a user terminal (UE). The RNC establishes an enhanced dedicated transport channel (E-DCH) which enables uplink data traffic with a determined maximum data rate from the user terminal (UE) to the NB. The RNC further establishes a high speed DL shared channel (HS-DSCH) which enables downlink data traffic with a determined maximum data rate from the NB to the user terminal. The NB comprises a HSDPA scheduler (HS-S) scheduling the data rate for the DL data traffic via the HS-DSCH and a EUL scheduler (EUL-S) scheduling the maximum data rate for the UL data traffic via the E-DCH. The NB exchanges data rate information between the HS-S and the EUL-S. Furthermore, the NB monitors the quotient (Q) between DL data rate and the UL data rate. When Q fulfils determined traffic conditions the HSDPA scheduler (HS-S) and/or the EUL scheduler (EUL-S) changes the allocation and/or the priority handling of the UL and/or the DL resources.
    • 电信系统包括无线网络控制器(RNC)和用于实现与用户终端(UE)的无线通信的节点B(NB)。 RNC建立增强的专用传输信道(E-DCH),其使得具有从用户终端(UE)到NB的确定的最大数据速率的上行链路数据业务。 RNC进一步建立高速DL共享信道(HS-DSCH),其使得具有从NB到用户终端的确定的最大数据速率的下行链路数据业务。 NB包括通过HS-DSCH调度用于DL数据业务的数据速率的HSDPA调度器(HS-S)和经由E-DCH调度UL数据业务的最大数据速率的EUL调度器(EUL-S)。 NB在HS-S和EUL-S之间交换数据速率信息。 此外,NB监视DL数据速率和UL数据速率之间的商(Q)。 当Q满足确定的业务条件时,HSDPA调度器(HS-S)和/或EUL调度器(EUL-S)改变UL和/或DL资源的分配和/​​或优先级处理。
    • 14. 发明申请
    • 3G/GSM and WLAN Integration of Telephony
    • 3G / GSM和WLAN集成电话
    • US20110188425A1
    • 2011-08-04
    • US13036293
    • 2011-02-28
    • Gunnar RydnellHans RönnekeStefan RommerJan Lindskog
    • Gunnar RydnellHans RönnekeStefan RommerJan Lindskog
    • H04W88/06H04W40/00H04W52/02
    • H04W40/00H04W52/02H04W88/06Y02D70/1224Y02D70/124Y02D70/142Y02D70/23
    • A Dual mode mobile terminal (MT2) comprising a WLAN interface (WLAN_NIC) and a cellular radio interface (GSM_NIC) has been described wherein when receiving a Page Request message over the cellular radio interface (GSM_NIC), indicating an incoming voice call over the cellular radio interface, or upon receiving an indication from the user of the dual mode terminal to perform an outgoing voice call, performing a determination as to whether a WLAN coverage is possible from an AP providing WLAN telephony calls, and if so responding, by issuing a WLAN call message to a WLAN AP over the WLAN interface to an interworking node (IWFN). There is moreover provided an Inter-working node (IWFN) comprising a cellular control unit (CTRL_SIP), a cellular unit (GSM_U), a voice over IP unit (VO_IP) and a router (R), which upon receiving a WLAN call from a dual mode terminal via a WLAN AP, is establishing a connection against a serving mobile switching centre (S_MSC/VLR), is performing a call initiation procedure, a assign traffic channel procedure and a call confirmation and call accepted procedure between the dual mode terminal (MT2) and the serving switching mode centre (S_MSC/VLR), is initiating duplex GSM/IP translation and is routing the cellular call between the AP and the serving mobile switching centre (S_MSC).
    • 已经描述了包括WLAN接口(WLAN_NIC)和蜂窝无线电接口(GSM_NIC)的双模式移动终端(MT2),其中当通过蜂窝无线电接口(GSM_NIC)接收到寻呼请求消息时,指示通过蜂窝 无线电接口,或者在从双模终端的用户接收到用于执行呼出语音呼叫的指示时,执行关于WLAN提供WLAN电话呼叫的AP是否可以进行WLAN覆盖的确定,如果是这样响应,则通过发出 通过WLAN接口将WLAN呼叫消息发送到WLAN AP到互通节点(IWFN)。 此外,还提供了一种包括蜂窝控制单元(CTRL_SIP),蜂窝单元(GSM_U),IP单元(VO_IP)和路由器(R))的工作间节点(IWFN),其在接收到来自 通过WLAN AP的双模终端正在建立与服务移动交换中心(S_MSC / VLR)的连接,正在执行呼叫发起过程,分配业务信道过程以及双模终端之间的呼叫确认和呼叫接受过程 (MT2)和服务交换模式中心(S_MSC / VLR)正在启动双工GSM / IP转换,并且在AP和服务移动交换中心(S_MSC)之间路由蜂窝呼叫。
    • 15. 发明申请
    • ALLOCATION AND PRIORITY HANDLING OF UPLINK AND DOWNLINK RESOURCES
    • 上传和下载资源的分配和优先处理
    • US20100311433A1
    • 2010-12-09
    • US12867328
    • 2008-02-12
    • Jan LindskogAndreas AnderssonPär AnkelAnders Ranheim
    • Jan LindskogAndreas AnderssonPär AnkelAnders Ranheim
    • H04W72/04
    • H04W72/1242H04W72/1273
    • A telecommunication system comprises a radio network controller (RNC), and a Node-B (NB) for enabling wireless communication with a user terminal (UE). The RNC establishes an enhanced dedicated transport channel (E-DCH) which enables uplink data traffic with a determined maximum data rate from the user terminal (UE) to the NB. The RNC further establishes a high speed DL shared channel (HS-DSCH) which enables downlink data traffic with a determined maximum data rate from the NB to the user terminal. The NB comprises a HSDPA scheduler (HS-S) scheduling the data rate for the DL data traffic via the HS-DSCH and a EUL scheduler (EUL-S) scheduling the maximum data rate for the UL data traffic via the E-DCH. The NB exchanges data rate information between the HS-S and the EUL-S. Furthermore, the NB monitors the quotient (Q) between DL data rate and the UL data rate. When Q fulfils determined traffic conditions the HSDPA scheduler (HS-S) and/or the EUL scheduler (EUL-S) changes the allocation and/or the priority handling of the UL and/or the DL resources.
    • 电信系统包括无线网络控制器(RNC)和用于实现与用户终端(UE)的无线通信的节点B(NB)。 RNC建立增强的专用传输信道(E-DCH),其使得具有从用户终端(UE)到NB的确定的最大数据速率的上行链路数据业务。 RNC进一步建立高速DL共享信道(HS-DSCH),其使得具有从NB到用户终端的确定的最大数据速率的下行链路数据业务。 NB包括通过HS-DSCH调度用于DL数据业务的数据速率的HSDPA调度器(HS-S)和经由E-DCH调度UL数据业务的最大数据速率的EUL调度器(EUL-S)。 NB在HS-S和EUL-S之间交换数据速率信息。 此外,NB监视DL数据速率和UL数据速率之间的商(Q)。 当Q满足确定的业务条件时,HSDPA调度器(HS-S)和/或EUL调度器(EUL-S)改变UL和/或DL资源的分配和/​​或优先级处理。
    • 16. 发明申请
    • DISTRIBUTED PICO-CELL MOBILITY
    • 分布的PICO细胞移动
    • US20100031314A1
    • 2010-02-04
    • US11722375
    • 2005-01-14
    • Gunnar RydnellJan LindskogRoger Walther
    • Gunnar RydnellJan LindskogRoger Walther
    • H04L9/32H04W36/00
    • H04W36/0072H04W36/14
    • System (PAA-BSS) comprising a plurality of access points (AP), defining a pre authentication area (PAA), the system communicating a list of frequencies relating to the access points of the pre-authentication area (PAA) and information as to the relative position of the access points to the a mobile station seeking pre-authentication before the system. Method of preparing a mobile station for handover between access points, wherein the mobile station associating (11, 21, 31) with a first access point in a predetermined group of access points (PAA-BSS) defining a pre-authentication area (PAA), the mobile station authenticating (12, 22, 32) itself before at least one prevalent access point of the group (PAA-BSS), upon being accepted for authentication before the prevalent, the mobile station receiving a response comprising a list of frequencies (14, 24, 34) pertaining to access points of the group (PAA-BSS).
    • 包括定义预认证区域(PAA)的多个接入点(AP)的系统(PAA-BSS),所述系统传送与预认证区域(PAA)的接入点相关的频率列表,以及关于 接入点在系统之前寻求预认证的移动台的相对位置。 一种用于在接入点之间切换移动台的方法,其中所述移动台将定义预认证区域(PAA)的预定接入点组(PAA-BSS)中的第一接入点相关联(11,21,31) 移动台本身在群组(PAA-BSS)的至少一个普遍接入点之前自身认证(PAA-BSS),在被普遍接受认证之前,移动站接收包括频率列表的响应(12,22,32) 14,24,34)关于该组的接入点(PAA-BSS)。
    • 20. 发明授权
    • 3G/GSM and WLAN integration of telephony
    • 3G / GSM和WLAN一体化的电话
    • US07937085B2
    • 2011-05-03
    • US11575183
    • 2004-09-17
    • Gunnar RydnellHans RönnekeStefan RommerJan Lindskog
    • Gunnar RydnellHans RönnekeStefan RommerJan Lindskog
    • H04W36/00H04W4/00H04M1/00
    • H04W68/12H04W40/02H04W76/10H04W84/042H04W84/12H04W88/06Y02D70/1222Y02D70/1224Y02D70/124Y02D70/142Y02D70/23Y02D70/30
    • A Dual mode mobile terminal (MT2) comprising a WLAN interface (WLAN_NIC) and a cellular radio interface (GSM_NIC) has been described wherein when receiving a Page Request (6) message over the cellular radio interface (GSM_NIC), indicating an incoming voice call over the cellular radio interface, or upon receiving an indication from the user of the dual mode terminal to perform an outgoing voice call, performing a determination (7) as to whether a WLAN coverage is possible from an AP providing WLAN telephony calls, and if so responding, by issuing a WLAN call message (8) to a WLAN AP over the WLAN interface to an interworking node (IWFN). There is moreover provided an Interworking node (IWFN) comprising a cellular control unit (CTRL_SIP), a cellular unit (GSM_U), a voice over IP unit (VO_IP) and a router (R), which upon receiving a WLAN call (9) from a dual mode terminal via a WLAN AP, is establishing a connection against a serving mobile switching centre (S_MSC/VLR) (10,10a, 10b), is performing a call initiation procedure (12-15), a assign traffic channel procedure (16-20) and a call confirmation and call accepted procedure (22-27) between the dual mode terminal (MT2) and the serving switching mode centre (S_MSC/VLR), is initiating duplex GSM/IP translation (29) and is routing the cellular call between the AP and the serving mobile switching centre (S_MSC).
    • 已经描述了包括WLAN接口(WLAN_NIC)和蜂窝无线电接口(GSM_NIC)的双模式移动终端(MT2),其中当通过蜂窝无线电接口(GSM_NIC)接收到寻呼请求(6)消息时,指示进入语音呼叫 或者在从双模终端的用户接收到用于执行呼出语音呼叫的指示时,执行关于是否可以从提供WLAN电话呼叫的AP进行WLAN覆盖的确定(7),以及如果 因此通过WLAN接口向WLAN AP发送WLAN呼叫消息(8)到互通节点(IWFN)。 此外提供了一种在接收到WLAN呼叫(9)时包括蜂窝控制单元(CTRL_SIP),蜂窝单元(GSM_U),IP语音单元(VO_IP)和路由器(R))的互通节点(IWFN) 从双模终端经由WLAN AP正在建立与服务移动交换中心(S_MSC / VLR)(10,10a,10b)的连接正在执行呼叫发起过程(12-15),分配业务信道过程 (16-20),双模终端(MT2)和服务交换模式中心(S_MSC / VLR)之间的呼叫确认和呼叫接受过程(22-27)正在启动双工GSM / IP转换(29),并且是 在AP和服务移动交换中心(S_MSC)之间路由蜂窝呼叫。