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    • 4. 发明授权
    • Technique for controlling handovers within a multi-radio wireless communication system
    • 用于控制多无线电无线通信系统内的切换的技术
    • US08213382B2
    • 2012-07-03
    • US11915706
    • 2005-05-30
    • Joachim SachsPer MagnussonArne Simonsson
    • Joachim SachsPer MagnussonArne Simonsson
    • H04W4/00
    • H04W36/14
    • A technique is provided for use by a Multi-Radio Management Resource (MRRM) component of a multi-radio wireless communication system for controlling the handover of a mobile terminal between different radio access technologies (RAT). In one example, all suitable RATs having coverage areas currently covering the location of a mobile terminal are identified. The performance gain that might be achieved via a handover to one of the other RATs is then determined by the MRRM based on various performance gain factors. Handover costs that will be incurred as a result of the handover are also explicitly calculated. Then, a cost-adjusted gain is determined by the MRRM based on the performance gain and the handover costs. A handover is only triggered by the MRRM if the cost-adjusted gain exceeds a minimum threshold. The speed and trajectory of the mobile terminal may also be considered.
    • 提供了一种用于多无线电无线通信系统的多无线电管理资源(MRRM)组件用于控制移动终端在不同无线电接入技术(RAT)之间切换的技术。 在一个示例中,识别出具有当前覆盖移动终端的位置的覆盖区域的所有合适的RAT。 然后,可以通过切换到其他RAT之一来实现的性能增益基于各种性能增益因子由MRRM确定。 也将明确计算由于切换而导致的切换成本。 然后,基于性能增益和切换成本,由MRRM确定成本调整后的增益。 如果成本调整后的增益超过最小阈值,则切换仅由MRRM触发。 也可以考虑移动终端的速度和轨迹。
    • 5. 发明申请
    • TECHNIQUE FOR CONTROLLING HANDOVERS WITHIN A MULTI-RADIO WIRELESS COMMUNICATION SYSTEM
    • 用于在多无线电无线通信系统中控制切换器的技术
    • US20090017823A1
    • 2009-01-15
    • US11915706
    • 2005-05-30
    • Joachim SachsPer MagnussonArne Simonsson
    • Joachim SachsPer MagnussonArne Simonsson
    • H04Q7/20
    • H04W36/14
    • A technique is provided for use by a Multi-Radio Management Resource (MRRM) component of a multi-radio wireless communication system for controlling the handover of a mobile terminal between different radio access technologies (RAT). In one example, all suitable RATs having coverage areas currently covering the location of a mobile terminal are identified. The performance gain that might be achieved via a handover to one of the other RATs is then determined by the MRRM based on various performance gain factors. Handover costs that will be incurred as a result of the handover are also explicitly calculated. Then, a cost-adjusted gain is determined by the MRRM based on the performance gain and the handover costs. A handover is only triggered by the MRRM if the cost-adjusted gain exceeds a minimum threshold. The speed and trajectory of the mobile terminal may also be considered.
    • 提供了一种用于多无线电无线通信系统的多无线电管理资源(MRRM)组件用于控制移动终端在不同无线电接入技术(RAT)之间切换的技术。 在一个示例中,识别出具有当前覆盖移动终端的位置的覆盖区域的所有合适的RAT。 然后,可以通过切换到其他RAT之一来实现的性能增益基于各种性能增益因子由MRRM确定。 也将明确计算由于切换而导致的切换成本。 然后,基于性能增益和切换成本,由MRRM确定成本调整后的增益。 如果成本调整后的增益超过最小阈值,则切换仅由MRRM触发。 也可以考虑移动终端的速度和轨迹。
    • 7. 发明授权
    • Generic access performance abstraction for access selection
    • 访问选择的通用访问性能抽象
    • US08867567B2
    • 2014-10-21
    • US12293400
    • 2006-03-24
    • Joachim SachsPer MagnussonMikael PrytzTeemu Rinta-Aho
    • Joachim SachsPer MagnussonMikael PrytzTeemu Rinta-Aho
    • H04L29/06H04L12/26H04L29/08H04L12/24
    • H04L43/08H04L41/08H04L41/0803H04L41/0806H04L41/5032H04L67/34
    • The invention provides methods method for access selection in a Multi-Access Network offering a plurality of Access Technologies (AT). The device may comprises a Multi Access Management entity (MAM) and a plurality of Generic Link Layer Entities (GLL) associated to a plurality of Accesses (A) according to said plurality of Access Technologies (AT). The access selection comprises an Access determination and an Access configuration. In a first step a Generic Link Layer Entity (GLL) determines one or more Generic Performance Metrics (GPM) corresponding to one or more configurations of the Access (A). The Generic Link Layer Entity (GLL) sends the determined one or more Generic Performance Metrics (GPM) corresponding to one or more configurations of the access (A) to the Multi Access Management entity (MAM). The Multi Access Management entity (MAM) determines from received Generic Performance Metrics (GPM), which Access (A) offers a configuration (GPM), which is suited for an application/bearer requirements. Then, said Multi Access Management entity (MAM) sends the determined configuration to the Generic Link Layer Entity (GLL) associated to the determined Access (A). The determined Generic Link Layer Entity (GLL) configures the Access (A) based on the determined configuration received from the Multi Access Management entity (MAM). Furthermore, the invention relates to corresponding devices, modules and software.
    • 本发明提供了提供多个接入技术(AT)的多接入网络中的接入选择方法/方法。 所述设备可以包括与根据所述多个接入技术(AT)的多个接入(A)相关联的多接入管理实体(MAM)和多个通用链路层实体(GLL)。 访问选择包括访问确定和访问配置。 在第一步中,通用链路层实体(GLL)确定与Access(A)的一个或多个配置相对应的一个或多个通用性能度量(GPM)。 通用链路层实体(GLL)将所确定的一个或多个与接入(A)的一个或多个配置相对应的通用性能度量(GPM)发送到多接入管理实体(MAM)。 多访问管理实体(MAM)从接收的通用性能度量(GPM)确定,哪个访问(A)提供适合于应用/承载要求的配置(GPM)。 然后,所述多路访问管理实体(MAM)将确定的配置发送到与确定的访问(A)相关联的通用链路层实体(GLL)。 所确定的通用链路层实体(GLL)基于从多接入管理实体(MAM)接收的确定配置来配置接入(A)。 此外,本发明涉及相应的设备,模块和软件。
    • 8. 发明授权
    • Lightweight MRRM with radio agnostic access selection in the core network
    • 核心网络中具有无线电不可知接入选择的轻量级MRRM
    • US08155617B2
    • 2012-04-10
    • US12090148
    • 2005-12-29
    • Per MagnussonJoachim SachsJohan LundsjöMikael Prytz
    • Per MagnussonJoachim SachsJohan LundsjöMikael Prytz
    • H04B1/16
    • H04W36/0066H04W36/0083H04W36/28
    • A method and arrangement for making a handover decision in a multi-access communication network is disclosed. A first set of criteria is determined for when a handover between at least two access paths should be performed and a report is sent when at least one criterion of a first set of criteria is fulfilled. A second set of criteria is determined for when a handover between said at least two access paths should be performed and a report is sent when at least one criterion of said second set of criteria is fulfilled. One or more data sessions of at least one user terminal network are determined to be handed over based on the sent reports and a core network anchor and a terminal anchor are directed to execute a handover by re-routing said determined data sessions from one access path to an alternative access path.
    • 公开了一种用于在多址通信网络中进行切换判定的方法和装置。 确定当应当执行至少两个访问路径之间的切换并且当符合第一组标准的至少一个标准时发送报告的第一组标准。 确定当应当执行所述至少两个访问路径之间的切换并且当符合所述第二组标准的至少一个准则时发送报告的第二组标准。 至少一个用户终端网络的一个或多个数据会话被确定为基于所发送的报告被切换,并且核心网络锚点和终端锚点被定向以通过从一个访问路径重新路由所述确定的数据会话来执行切换 到另一个访问路径。
    • 10. 发明申请
    • Method and arrangement for channel type switching
    • 通道类型切换的方法和布置
    • US20050013287A1
    • 2005-01-20
    • US10491879
    • 2001-10-19
    • Pontus WallentinNiclas WibergEva EnglundPer Magnusson
    • Pontus WallentinNiclas WibergEva EnglundPer Magnusson
    • H04L12/56H04W72/08H04Q7/00
    • H04W28/16
    • The present invention relates to a method for improved and efficient usage of radio network resources with regard to the transmission properties of applied communication channel types and total network load by means of using early indications on the uplink or downlink of requests to establish new communication connection or adjust parameter settings of already existing connections regading the expectable amount of additional traffic due to such a connection. Early indications are, e.g., information on protocol type, the kind of requested communication service, the profile of the user equipment that has sent the request, or traffic history. In response to such indications the inventive method can forward, e.g., an uplink request and at the same time initiate a channel type switching providing appropriate channel parameter settings or adjustments. In case of congestion control it is another possibility to delay or even suppress uplink requests.
    • 本发明涉及一种通过在上行链路或下行链路上使用早期指示来建立新的通信连接的请求来提高和有效地利用无线电网络资源的方法,该方法涉及应用的通信信道类型和总的网络负载的传输特性,或者 调整已经存在的连接的参数设置,从而引起由于这种连接造成的额外流量的预期数量。 早期的指示是例如关于协议类型的信息,所请求的通信服务的类型,已经发送请求的用户设备的简档或业务历史。 响应于这种指示,本发明的方法可以转发例如上行链路请求,并且同时发起提供适当的信道参数设置或调整的信道类型切换。 在拥塞控制的情况下,延迟或甚至抑制上行链路请求是另一种可能性。