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    • 3. 发明授权
    • Unequal error protection in a packet transmission system
    • 分组传输系统中的不平等的错误保护
    • US07333449B2
    • 2008-02-19
    • US10432519
    • 2001-11-27
    • Gerd ZimmermannHui LiFabian WengerJan LindskogMathias Pauli
    • Gerd ZimmermannHui LiFabian WengerJan LindskogMathias Pauli
    • H04B7/212
    • H04L1/007H04L1/0003H04L1/0009H04L1/08
    • In a packet transmission system, especially wireless transmission system, where data is transmitted in packets at different error protection levels and where the error protection level of one packet (=the succeeding packet) may differ from the error protection level of a preceding packet without providing code termination between the said preceding and the said succeeding packet the performance may degrade in case a different error protection level is used by the preceding packet and the succeeding packet. The invention proposes in these cases to insert a supplementary packet between the preceding and the succeeding packet whereby the error protection level of the supplementary packet is higher than the lowest error protection level that is used either by the preceding or the succeeding packet.
    • 在分组传输系统中,特别是无线传输系统,其中数据以不同的错误保护级别以分组传输,并且一个分组(=后续分组)的错误保护级别可能不同于前一分组的错误保护级别而不提供 在前一个分组和后续分组使用不同的错误保护级别的情况下,所述前一个和所述后续分组之间的代码终止可能会降级。 本发明在这些情况下提出在前一个分组之间插入补充分组,由此补充分组的错误保护等级高于由前一个或后续分组使用的最低的错误保护等级。
    • 4. 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。
    • 5. 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。
    • 6. 发明申请
    • DISTRIBUTION OF DOWNLINK E-DCH POWER USAGE
    • 下行E-DCH电源的分配
    • US20110038342A1
    • 2011-02-17
    • US12990045
    • 2008-04-29
    • Jan LindskogAndreas AnderssonPar AnkelAnders RanheimRoger Wallerius
    • Jan LindskogAndreas AnderssonPar AnkelAnders RanheimRoger Wallerius
    • H04W52/04
    • H04W52/286H04W28/18H04W52/16H04W52/346
    • The present invention relates to a method, a communication system and a Node-B (NB) in a communication system for distribution of downlink E-DCH power usage in a communication system. The system comprises at least one Node-B (NB) for enabling wireless communication with at least one user terminal (UE). The communication is enabled via an enhanced dedicated transport channel (E-DCH) and one high speed downlink shared channel (HS-DSCH) for uplink (UL) and downlink (DL) data traffic between the user terminal (UE) and the Node-B (NB). The Node-B (NB) comprises a HSDPA scheduler (HS-S) for scheduling the data rate for the DL data traffic via the HS-DSCH. It further comprises an EUL scheduler (EUL-S) for scheduling the maximum data rate for the UL data traffic via the E-DCH. The method is particularly characterized in that the Node-B (NB) estimates 111 the power consumption and/or the corresponding transmision time for at least one forthcoming E-DCH DL transmission on at least one E-DCH physical channel. The Node-B (NB) sends 112 the estimated power consumption and/or the corresponding transmission time information to the HSDPA scheduler (HS-S) prior to the E-DCH DL transmission.
    • 本发明涉及用于在通信系统中分配下行链路E-DCH功率使用的通信系统中的方法,通信系统和节点B(NB)。 该系统包括至少一个能够与至少一个用户终端(UE)进行无线通信的节点B(NB)。 该通信通过用户终端(UE)和节点间链路(UE)之间的上行链路(UL)和下行链路(DL)数据业务的增强型专用传输信道(E-DCH)和一个高速下行链路共享信道(HS-DSCH) B(NB)。 节点B(NB)包括用于经由HS-DSCH调度用于DL数据业务的数据速率的HSDPA调度器(HS-S)。 它还包括用于通过E-DCH调度用于UL数据业务的最大数据速率的EUL调度器(EUL-S)。 该方法的特征在于,节点B(NB)估计在至少一个E-DCH物理信道上的至少一个即将来临的E-DCH DL传输的功率消耗和/或相应的传输时间。 节点B(NB)在E-DCH DL传输之前向HSDPA调度器(HS-S)发送估计的功率消耗和/或相应的传输时间信息112。
    • 7. 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。
    • 10. 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。