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    • 1. 发明授权
    • Pre-start-up procedure for internal interface of distributed radio base station
    • 分布式无线电基站内部接口的启动前程序
    • US07856029B2
    • 2010-12-21
    • US10909843
    • 2004-08-03
    • Jacob Kristian OsterlingFranz HeiserKlas Sjerling
    • Jacob Kristian OsterlingFranz HeiserKlas Sjerling
    • H04L12/28H04J3/16
    • H04W24/02H04W88/08
    • A radio base station (20) has an internal interface (26) connecting a radio equipment (RE) (24) and a radio equipment controller (REC) (22). The radio base station performs a pre-start-up procedure or method for the internal (26). The pre-start-up procedure is performed preparatory to and/or in conjunction with a start-up procedure for the internal interface. As on e of its aspects, the pre-start-up procedure involves storing one or more previously proven combinations of line bit rate and protocol as stored combination(s) for use on the internal interface. Prior to synchronization of the internal interface, the stored combination(s) are retrieved and included in a temporary available set of combinations of line bit rate and protocol. Thereafter the start-up procedure for the internal interface is initiated for the purpose of determining efficacy of the temporary available set. Should synchronization of the physical layer by the start-up procedure succeed, the pre-start-up procedure uses a valid combination of line bit rate and protocol in the available set for negotiating between the radio equipment controller (REC) and the radio equipment (RE). Should the start-up procedure fail, the pre-start-up procedure removes a failed combination of line bit rate and protocol from the set.
    • 无线电基站(20)具有连接无线电设备(RE)(24)和无线电设备控制器(REC)(22)的内部接口(26)。 无线电基站对内部接口(26)执行预启动过程或方法。 执行预启动过程是为内部接口的启动过程准备和/或结合使用的。 作为其中的一个方面,预启动过程涉及存储一个或多个先前被验证的行比特率和协议的组合作为在内部接口上使用的存储组合。 在内部接口同步之前,存储的组合被检索并被包括在线路比特率和协议的临时可用组合中。 此后启动内部接口的启动过程,以确定临时可用集合的有效性。 如果通过启动程序的物理层的同步成功,则启动前程序使用可用集合中的线路比特率和协议的有效组合来协商无线电设备控制器(REC)和无线电设备( 回覆)。 如果启动过程失败,则启动前程序将从组中删除线路比特率和协议的失败组合。
    • 5. 发明申请
    • Pre-start-up procedure for internal interface of distributed radio base station
    • US20050107124A1
    • 2005-05-19
    • US10909843
    • 2004-08-03
    • Jacob OsterlingFranz HeiserKlas Sjerling
    • Jacob OsterlingFranz HeiserKlas Sjerling
    • H04M1/00
    • H04W24/02H04W88/08
    • A radio base station (20) has an internal interface (26) connecting a radio equipment (RE) (24) and a radio equipment controller (REC) (22). The radio base station performs a pre-start-up procedure or method for the internal interface (26). The pre-start-up procedure is preformed preparatory to and/or in conjunction with a start-up procedure for the internal interface. As one of its aspects, the pre-start-up procedure involves storing one or more previously proven combinations of line bit rate and protocol as stored combination(s) for use on the internal interface. Prior to synchronization of the internal interface, the stored combination(s) are retrieved and included in a temporary available set of combinations of line bit rate and protocol. Thereafter the start-up procedure for the internal interface is initiated for the purpose of determining efficacy of the temporary available set. Should synchronization of the physical layer by the start-up procedure succeed, the pre-start-up procedure uses a valid combination of line bit rate and protocol in the available set for negotiating between the radio equipment controller (REC) and the radio equipment (RE). Should the start-up procedure fail, the pre-start-up procedure removes a failed combination of line bit rate and protocol from the set. In another of its aspects, the pre-start-up procedure classifies the temporary available set into plural subsets, each subset of the temporary available set containing combinations of line bit rate and protocol having a same line bit rate. The pre-start-up procedure separately initiates the start-up procedure for the internal interface for each subset. In another of its aspects, the pre-start-up procedure classifies the stored combinations as: (1) a best last time combination of line bit rate and protocol which was involved in a last successful execution of the start-up procedure; and (2) a union all combinations of line bit rate and protocol for which the synchronization of the physical layer has previously been successful during the start-up procedure. Capitalizing upon this classification, the pre-start-up procedure can use the best last time combination as the temporary available set for initiating the start-up procedure for the internal interface. Then, if the start-up procedure fails, the pre-start-up procedure can resort to using the union of all combinations as the temporary available set for initiating the start-up procedure for the internal interface.
    • 6. 发明授权
    • Setting maximum power at a mobile communication system base station having multiple antennas
    • 在具有多个天线的移动通信系统基站设置最大功率
    • US08553667B2
    • 2013-10-08
    • US12667829
    • 2008-04-23
    • Muhammad KazmiKlas Sjerling
    • Muhammad KazmiKlas Sjerling
    • H04B7/216
    • H04B7/0426H04B7/068H04B7/0689H04L5/0007H04L5/0023H04L5/0039H04L5/0058H04W52/143H04W52/346H04W52/42
    • A MIMO-capable base station allocates a maximum transmission power budget to each of its antennas. For serving each of one or more MIMO and non-MIMO users, one or more carriers are allocated. For each carrier, information about an amount of allocated MIMO and non-MIMO user resources associated with the carrier is used to derive coefficients. Each coefficient corresponds to a unique one of the antennas, and represents a proportion of a maximum power budget for the carrier. For each carrier, the coefficients and the maximum transmission power budget for the carrier are used to derive a maximum transmission power budget for each of the antennas. For each antenna, a total maximum transmission power budget for the antenna is derived by combining the derived maximum transmission power budgets of the carriers transmitted on the antenna. The total maximum power budget of the antenna should not exceed a limit for the antenna.
    • 具有MIMO能力的基站向其每个天线分配最大传输功率预算。 为了服务于一个或多个MIMO和非MIMO用户中的每一个,分配一个或多个载波。 对于每个载波,使用关于与载波相关联的分配的MIMO和非MIMO用户资源的数量的信息来导出系数。 每个系数对应于天线中唯一的一个,并且表示载波的最大功率预算的比例。 对于每个载波,使用用于载波的系数和最大发射功率预算来导出每个天线的最大发射功率预算。 对于每个天线,通过组合在天线上发射的载波的导出的最大发射功率预算来导出用于天线的总最大发射功率预算。 天线的总最大功率预算不应超过天线的限制。
    • 7. 发明申请
    • Setting Maximum Power at a Mobile Communication System Base Station having Multiple Antennas
    • 在具有多个天线的移动通信系统基站设置最大功率
    • US20100202431A1
    • 2010-08-12
    • US12667829
    • 2008-04-23
    • Muhammad KazmiKlas Sjerling
    • Muhammad KazmiKlas Sjerling
    • H04B7/216H04L1/02
    • H04B7/0426H04B7/068H04B7/0689H04L5/0007H04L5/0023H04L5/0039H04L5/0058H04W52/143H04W52/346H04W52/42
    • A MIMO-capable base station allocates a maximum transmission power budget to each of its antennas. For serving each of one or more MIMO and non-MIMO users, one or more carriers are allocated. For each carrier, information about an amount of allocated MIMO and non-MIMO user resources associated with the carrier is used to derive coefficients. Each coefficient corresponds to a unique one of the antennas, and represents a proportion of a maximum power budget for the carrier. For each carrier, the coefficients and the maximum transmission power budget for the carrier are used to derive a maximum transmission power budget for each of the antennas. For each antenna, a total maximum transmission power budget for the antenna is derived by combining the derived maximum transmission power budgets of the carriers transmitted on the antenna. The total maximum power budget of the antenna should not exceed a limit for the antenna.
    • 具有MIMO能力的基站向其每个天线分配最大传输功率预算。 为了服务于一个或多个MIMO和非MIMO用户中的每一个,分配一个或多个载波。 对于每个载波,使用关于与载波相关联的分配的MIMO和非MIMO用户资源的数量的信息来导出系数。 每个系数对应于天线中唯一的一个,并且表示载波的最大功率预算的比例。 对于每个载波,使用用于载波的系数和最大发射功率预算来导出每个天线的最大发射功率预算。 对于每个天线,通过组合在天线上发射的载波的导出的最大发射功率预算来导出用于天线的总最大发射功率预算。 天线的总最大功率预算不应超过天线的限制。