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    • 41. 发明授权
    • Method and arrangement in a wireless communication network
    • 无线通信网络中的方法和布置
    • US07948879B2
    • 2011-05-24
    • US12350619
    • 2009-01-08
    • Johan TorsnerMichael MeyerJanne Peisa
    • Johan TorsnerMichael MeyerJanne Peisa
    • H04J1/16
    • H04W28/0289H04L1/1607H04L1/1685H04L43/06H04L43/062
    • Method and arrangement in a first node for requesting a status report from a second node. The first node and the second node are both comprised within a wireless communication network. The status report comprises positive and/or negative acknowledgement of data sent from the first node, to be received by the second node. The first node comprises a first counter configured to count the number of transmitted Protocol Data Units, PDUs, and a second counter configured to count the number of transmitted data bytes. The method and arrangements comprises initializing the first and the second counter to zero, transmitting data to be received by the second node, comparing the value of the first and the second counters with a first threshold limit value and a second threshold limit value and requesting a status report from the second node if any of the threshold limit values is reached or exceeded.
    • 用于从第二节点请求状态报告的第一节点中的方法和装置。 第一节点和第二节点都包括在无线通信网络内。 状态报告包括从第一节点发送的数据的肯定和/或否定确认,以由第二节点接收。 第一节点包括被配置为对所发送的协议数据单元的数量进行计数的第一计数器,以及被配置为对发送的数据字节数进行计数的第二计数器。 该方法和装置包括将第一和第二计数器初始化为零,发送要由第二节点接收的数据,将第一和第二计数器的值与第一阈值极限值和第二阈值极限值进行比较,并请求 如果达到或超过任何阈值极限值,则来自第二个节点的状态报告。
    • 45. 发明授权
    • Avoiding stall conditions and sequence number ambiguity in an automatic repeat request protocol
    • 在自动重复请求协议中避免停顿条件和序列号模糊
    • US07187677B2
    • 2007-03-06
    • US10152986
    • 2002-05-23
    • Per Johan TorsnerJanne Peisa
    • Per Johan TorsnerJanne Peisa
    • H04L12/56
    • H04L1/1848H04L1/1819H04L1/1832H04L1/187
    • The present invention provides a stall avoidance mechanism that may be used alone or in conjunction with an ambiguity avoidance mechanism in an ARQ protocol. Both mechanisms decrease data delays and increase data throughput rates. Stall avoidance is accomplished by determining whether a stall condition exists with respect to receiving a missing data unit. In one example, only a single timer is needed to avoid stalls. Retransmission ambiguities may be avoided using a retransmission window in the transmitter and/or a receive window in the receiver. Although each mechanism may be used independently of the other, a preferred example embodiment uses a stall avoidance timer, a retransmission window in the transmitter, and a receive window in the receiver.
    • 本发明提供了可以单独使用或与ARQ协议中的模糊度回避机制结合使用的失速回避机制。 这两种机制都可以减少数据延迟并提高数据吞吐率。 通过确定关于接收丢失的数据单元是否存在失速条件来实现失速回避。 在一个示例中,仅需要一个定时器来避免停顿。 可以使用发射机中的重传窗口和/或接收机中的接收窗口来避免重传模糊。 虽然每个机制可以独立于另一个使用,但是优选示例性实施例使用失速避免定时器,发送器中的重传窗口和接收器中的接收窗口。