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    • 81. 发明授权
    • Methods and network nodes for scheduling transmission
    • 方法和网络节点进行调度传输
    • US08971271B2
    • 2015-03-03
    • US13637405
    • 2012-05-11
    • Martin HesslerErik Eriksson
    • Martin HesslerErik Eriksson
    • H04W72/04
    • H04L1/1819H04L1/1893H04L1/1896
    • A radio network node (110) configured to schedule transmission between the radio network node (110) and a user equipment (120) and a method therein as well as a user equipment (120) configured to receive a scheduling grant for a transmission between the user equipment (120) and the radio network node (110) and a method therein are provided. The radio network node (110) determines (201) a transport block size scaling factor. Next, the radio network node (110) determines (206) a scheduling grant for the transmission based on the transport block size scaling factor. Furthermore, the radio network node (110) sends (207) the transport block size scaling factor and the scheduling grant to the user equipment (120).
    • 一种无线电网络节点(110),被配置为调度所述无线电网络节点(110)和用户设备(120)之间的传输及其中的方法以及用户设备(120),所述用户设备(120)被配置为接收所述无线电网络节点 用户设备(120)和无线电网络节点(110)及其中的方法。 无线电网络节点(110)确定(201)传输块大小缩放因子。 接下来,无线电网络节点(110)基于传输块大小缩放因子确定(206)用于传输的调度许可。 此外,无线电网络节点(110)向用户设备(120)发送(207)传输块大小缩放因子和调度许可。
    • 82. 发明申请
    • RADIO COMMUNICATION SYSTEM FOR ASSIGNING A SHORT-LIVED C-RNTI
    • 用于分配短租C-RNTI的无线电通信系统
    • US20150043455A1
    • 2015-02-12
    • US14370162
    • 2012-01-03
    • György MiklósErik ErikssonJohan RuneJoachim SachsZoltán TurányiNiclas Wiberg
    • György MiklósErik ErikssonJohan RuneJoachim SachsZoltán TurányiNiclas Wiberg
    • H04W76/02H04W72/04H04W74/08
    • H04W76/11H04W8/26H04W72/042H04W74/0833
    • A radio communication system and a method for assigning a short-lived Cell Radio Network Temporary Identifier (C-RNTI) to a first user equipment performing random access to a radio network node are provided. The radio communication system registers the first user equipment as connected to the radio network node. A message for synchronizing the radio network node and the first user equipment with respect to the first time period is transferred. After the first time period has elapsed, the radio communication system maintains the first user equipment connected to the radio network node, and allows the short-lived C-RNTI to be assigned to a second user equipment. Furthermore, a first user equipment and method for enabling assignment of a short-lived C-RNTI to the first user equipment performing random access and a radio network node and method for assigning a short-lived C-RNTI to a first user equipment performing random access are provided.
    • 提供了一种无线电通信系统和用于向执行随机接入无线电网络节点的第一用户设备分配短寿命小区无线电网络临时标识符(C-RNTI)的方法。 无线电通信系统注册连接到无线电网络节点的第一用户设备。 传送用于使无线电网络节点和第一用户设备相对于第一时间段同步的消息。 在第一时间段过去之后,无线电通信系统维护连接到无线电网络节点的第一用户设备,并且允许将短暂的C-RNTI分配给第二用户设备。 此外,用于能够将短命C-RNTI分配给执行随机接入的第一用户设备的第一用户设备和方法以及用于向执行随机的第一用户设备分配短命C-RNTI的无线网络节点和方法 提供访问。
    • 83. 发明申请
    • Retransmission Protocol Feedback Handling with Multiple Feedback Times
    • 重传协议反馈处理多个反馈时间
    • US20150016432A1
    • 2015-01-15
    • US14380081
    • 2012-02-21
    • Michael MeyerKumar BalachandranErik ErikssonJohan RuneJoachim Sachs
    • Michael MeyerKumar BalachandranErik ErikssonJohan RuneJoachim Sachs
    • H04L1/18
    • H04L1/1854H04L1/1812H04L1/1861H04L1/1887H04L1/1896
    • In a mobile network, the transmission of downlink data blocks (303, 307) to one or more terminal devices (200, 210) is accomplished on the basis of a retransmission protocol with a first feedback time (F1) defining a time interval between transmission of a first data block (303) and transmission of a first feedback message (308) being different from a second feedback time (F2) defining a time interval between transmission of a second data block (307) and transmission of a second feedback message (309). The first feedback message (308) indicates whether the first data block (303) was successfully received, and the second feedback message (309) indicates whether the second data block (307) was successfully received. A base station (100) of the mobile network controls the terminal device (200, 210) to send the second feedback message (309) on other resources than used for transmission of the first feedback message (308).
    • 在移动网络中,下行链路数据块(303,307)向一个或多个终端设备(200,210)的传输是基于具有定义传输之间的时间间隔的第一反馈时间(F1)的重传协议来实现的 第一数据块(303)的传输和第一反馈消息(308)的传输不同于定义第二数据块(307)的传输和第二反馈消息(307)的传输之间的时间间隔的第二反馈时间(F2) 309)。 第一反馈消息(308)指示是否成功接收到第一数据块(303),并且第二反馈消息(309)指示是否成功接收到第二数据块(307)。 移动网络的基站(100)控制终端设备(200,210)发送第二反馈消息(309),而不是用于发送第一反馈消息(308)的其他资源。
    • 86. 发明申请
    • HIGH THROUGHPUT REACTOR ASSEMBLY FOR POLYMERIZATION OF OLEFINS
    • 用于烯烃聚合的高通量反应器组件
    • US20140058051A1
    • 2014-02-27
    • US14002426
    • 2012-03-02
    • Günter WeickertErik ErikssonMichiel BergstraKlaus Nyfors
    • Günter WeickertErik ErikssonMichiel BergstraKlaus Nyfors
    • B01J8/18C08F110/06C08F210/16
    • B01J8/1872B01J8/1827B01J8/388B01J19/2465B01J2208/00274B01J2219/0004B01J2219/00254B01J2219/1947C08F110/06C08F210/16
    • Reactor assembly for the production of polymers including a fluidized bed reactor (1) comprising a bottom zone (5), a middle zone (6) and an upper zone (7), an inlet (8) for the fluidization gas located in the bottom zone (5), an outlet (9) for the fluidization gas located in the upper zone (7); the outlet (9) for the fluidization gas being coupled with the fluidized bed reactor (1) via inlet (8) via a gas circulation line; means for separation of solids from gas (2) being connected to said gas circulation line; the equivalent cross-sectional diameter of the upper zone (7) being monotonically decreasing with respect to the flow direction of the fluidization gas through the fluidized bed reactor; the middle zone (6) having an essentially constant equivalent cross-sectional diameter with respect to the flow direction of the fluidization gas through the fluidized bed reactor; the equivalent cross-sectional diameter of the bottom zone (5) being monotonically increasing with respect to the flow direction of the fluidization gas through the fluidized bed reactor; characterized in that the ratio of the height of the fluidized bed reactor to the equivalent cross-sectional diameter of the middle zone of the fluidized bed reactor is from 2 to 10; and whereby said upper zone (7) is directly connected to said middle zone (6).
    • 用于生产包括流化床反应器(1)的聚合物的反应器组件包括底部区域(5),中间区域(6)和上部区域(7),用于位于底部的流化气体的入口(8) 区域(5),用于位于上部区域(7)中的流化气体的出口(9); 用于流化气体的出口(9)通过气体循环管线通过入口(8)与流化床反应器(1)相连; 用于从与所述气体循环管线连接的气体(2)分离固体的装置; 上部区域(7)的等效横截面直径相对于通过流化床反应器的流化气体的流动方向单调减小; 所述中间区域(6)具有相对于通过所述流化床反应器的流化气体的流动方向具有基本恒定的等效横截面直径; 底部区域(5)的等效横截面直径相对于通过流化床反应器的流化气体的流动方向单调增加; 其特征在于,流化床反应器的高度与流化床反应器的中间区域的等效横截面直径之比为2至10; 并且由此所述上部区域(7)直接连接到所述中间区域(6)。
    • 87. 发明申请
    • Transfer of Access Restriction Information Between a Radio Network Node and a User Equipment
    • 无线网络节点与用户设备之间的接入限制信息的传输
    • US20140004857A1
    • 2014-01-02
    • US13983976
    • 2011-02-23
    • Johan RuneErik Eriksson
    • Johan RuneErik Eriksson
    • H04W48/12
    • H04W48/12H04W8/26H04W74/0833
    • Methods in a radio network node (110) and a user equipment (120) as well as a radio network node (110) and a user equipment (120) for providing access restriction information about restricting access to a cell (C1), managed by the radio network node (110), for at least the user equipment (120) are provided. The radio network node (110) encodes a downlink control information message by using a user equipment identifier associated with the access restriction information. Next, the radio network node (110) sends the downlink control information message to the user equipment (120). Next, the user equipment (120) decodes the downlink control information message to obtain the user equipment identifier associated with the access restriction information.
    • 无线电网络节点(110)和用户设备(120)以及无线电网络节点(110)和用户设备(120)中的方法,用于提供关于限制对小区(C1)的接入的接入限制信息,所述接入限制信息由 提供至少用户设备(120)的无线电网络节点(110)。 无线电网络节点(110)通过使用与访问限制信息相关联的用户设备标识符对下行链路控制信息消息进行编码。 接下来,无线电网络节点(110)向用户设备(120)发送下行链路控制信息消息。 接下来,用户设备(120)解码下行链路控制信息消息以获得与访问限制信息相关联的用户设备标识符。
    • 88. 发明申请
    • Method and Apparatus for Resource Assignment During Control Channel Ambiguity
    • 控制信道模糊度下资源分配的方法与装置
    • US20130301543A1
    • 2013-11-14
    • US13642563
    • 2012-08-29
    • Erik ErikssonMattias FrenneDaniel Larsson
    • Erik ErikssonMattias FrenneDaniel Larsson
    • H04W72/04
    • H04W72/042H04W24/02H04W72/00
    • In one example of the teachings herein, a network base station (16, 18) includes one or more communication interfaces configured to send messages to a wireless communication device, and one or more processing circuits (36) operatively associated with the communication interface(s). The processing circuits (36) are configured to send a reconfiguration message to the device using an existing downlink control channel configuration for the device, which message indicates a new downlink control channel configuration for the device, and, during a window of control channel configuration ambiguity that arises for the device as a consequence of sending the reconfiguration message, send a control message to the device using both the existing and the new downlink control channel configurations. Such a method of operation advantageously avoids the delays that arise if new downlink control signaling towards the device (20) is deferred until receiving confirmation that the device (20) received the reconfiguration message.
    • 在本文的教导的一个示例中,网络基站(16,18)包括被配置为向无线通信设备发送消息的一个或多个通信接口以及与通信接口(s)可操作地相关联的一个或多个处理电路(36) )。 处理电路(36)被配置为使用设备的现有下行链路控制信道配置向设备发送重配置消息,该消息指示用于设备的新的下行链路控制信道配置,并且在控制窗口期间,信道配置模糊 由于发送重新配置消息,该设备产生的设备,使用现有和新的下行链路控制信道配置向设备发送控制消息。 这种操作方法有利地避免了延迟,如果针对设备(20)的新的下行链路控制信令被推迟,直到接收到设备(20)接收到重新配置消息的确认为止。
    • 89. 发明申请
    • Method and Arrangement for Adapting Guard Time Based on Timing Advance
    • 基于定时提前调整保护时间的方法与布置
    • US20130288698A1
    • 2013-10-31
    • US13996116
    • 2010-12-30
    • Johan RuneErik ErikssonNiclas Wiberg
    • Johan RuneErik ErikssonNiclas Wiberg
    • H04W72/04
    • H04W72/0446H04L27/2605H04W4/70H04W28/04H04W28/18H04W52/0216H04W56/00H04W56/0045H04W72/04H04W74/08H04W84/18H04W88/08Y02D70/00Y02D70/1226Y02D70/1242Y02D70/1262Y02D70/21
    • A method in a base station for selecting a set of transport format schemes for a cell is provided. The set of transport format schemes shall be used for a radio transmission from a communication device to the base station. The base station is serving the eel! comprising the communication device. The communication device is unsynchronized for transmission to the base station. The base station specifies (201) a plurality of sets of transport format schemes. Each set of transport format schemes is associated to a respective guard time, which guard time is a time margin required to compensate for the communication device being unsynchronized for transmission to the base station. After determining (203) a required guard time as the maximum timing advance value used in the cell the base station selects (204) one set of transport format schemes from the plurality of sets of transport format schemes to be available for the cell. The set is selected such that its associated guard time matches the determined required guard time in the cell.
    • 提供了一种用于选择一个小区的传输格式方案的基站中的方法。 传输格式方案组将用于从通信设备到基站的无线电传输。 基地正在为鳗鱼服务! 包括通信设备。 通信设备不同步以传输到基站。 基站指定(201)多组传输格式方案。 每组传输格式方案与相应的保护时间相关联,该保护时间是补偿通信设备不同步以传输到基站所需的时间余量。 在确定(203)所需的保护时间作为在小区中使用的最大定时提前值时,基站从多个传输格式方案组中选择(204)一组可用于小区的传输格式方案。 选择该组,使得其相关联的保护时间与确定的小区中所需的保护时间相匹配。