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    • 1. 发明申请
    • EXTENDED USF ADDRESSING SPACE
    • 延伸的空军
    • WO2011056118A1
    • 2011-05-12
    • PCT/SE2010/050784
    • 2010-07-06
    • TELEFONAKTIEBOLAGET L M ERICSSON (PUBL)BERGSTRÖM, AndreasSCHLIWA-BERTLING, PaulBERGQVIST, JensAXELSSON, Håkan
    • BERGSTRÖM, AndreasSCHLIWA-BERTLING, PaulBERGQVIST, JensAXELSSON, Håkan
    • H04W72/12H04W72/04
    • H04W72/0446H04W8/26H04W72/1289
    • The present invention relates to assigning addresses to communication devices in a radio access network and notifying communication devices of scheduled uplink transmission time periods. Related methods, communication devices and control units are disclosed. A method of assigning an address to a communication device in a radio access network for use in notification of scheduled uplink transmission time periods for the communication device is provided. The method comprises assigning to the communication device an uplink state flag (USF) value. Furthermore, the method comprises assigning to the communication device an extended USF (eUSF) value. The address assigned to the communication device is a combination of the assigned USF value and the assigned eUSF value. By means of the eUSF value, the normal address range provided by the USF is extended, thereby facilitating use of more communication devices in the radio access network.
    • 本发明涉及为无线接入网络中的通信设备分配地址,并通知通信设备调度的上行链路传输时间段。 公开了相关方法,通信装置和控制单元。 提供了一种将无线电接入网络中的通信设备分配给用于通知通信设备的调度的上行链路传输时间段的通知的方法。 该方法包括向通信设备分配上行链路状态标志(USF)值。 此外,该方法包括向通信设备分配扩展的USF(eUSF)值。 分配给通信设备的地址是分配的USF值和分配的eUSF值的组合。 通过eUSF值,USF提供的正常地址范围被扩展,从而便于在无线接入网络中使用更多的通信设备。
    • 8. 发明申请
    • APPLICATION LAYER COMMUNICATION VIA SINGLE RADIO BLOCK ACCESS
    • 应用层通信通过单个无线电块访问
    • WO2011141835A1
    • 2011-11-17
    • PCT/IB2011/051706
    • 2011-04-20
    • TELEFONAKTIEBOLAGET L M ERICSSON (PUBL)DIACHINA, JohnSCHLIWA-BERTLING, PaulBERGSTRÖM, Andreas
    • DIACHINA, JohnSCHLIWA-BERTLING, PaulBERGSTRÖM, Andreas
    • H04L29/08H04W72/04
    • H04W4/00H04L67/12H04W4/70H04W72/048
    • Embodiments herein advantageously reduce the amount of control signalling and header information that must accompany an application layer message when transporting that message from a wireless device to a supporting application server via an intermediate node. To do so, the wireless device prepares a single radio block that includes the application layer message and an indication that the single radio block contains the entire application layer message. The device then sends a control message to the intermediate node that requests allocation of radio resources for sending the single radio block without establishing a temporary block flow (TBF). The device finally sends the single radio block using the allocated resources, without a TBF. Upon receiving the block, the intermediate node determines, based on the indication within the block, whether or not the block contains an entire application layer message. If so, the intermediate node forwards that application layer message towards the application server.
    • 本文中的实施例有利地减少了当通过中间节点将该消息从无线设备传送到支持应用服务器时必须伴随应用层消息的控制信令和报头信息的量。 为此,无线设备准备包括应用层消息的单个无线电块以及单个无线电块包含整个应用层消息的指示。 然后,设备向中间节点发送控制消息,中间节点请求分配无线电资源以发送单个无线电块而不建立临时块流(TBF)。 设备最终使用分配的资源发送单个无线电块,而不使用TBF。 在接收到块时,中间节点基于块内的指示来确定块是否包含整个应用层消息。 如果是这样,中间节点将该应用层消息转发到应用服务器。