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首页> 外文期刊>IEEE transactions on mobile computing >Gap Processing Time Analysis of Stall Avoidance Schemes for High-Speed Downlink Packet Access with Parallel HARQ Mechanisms
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Gap Processing Time Analysis of Stall Avoidance Schemes for High-Speed Downlink Packet Access with Parallel HARQ Mechanisms

机译:并行HARQ机制的高速下行分组接入失速避免方案的间隙处理时间分析

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The parallel multichannel stop-and-wait (SAW) hybrid automatic repeat request (HARQ) mechanism is one of key technologies for high-speed downlink packet access in the wideband code division multiple access system. However, this parallel HARQ mechanism may encounter a serious stall problem, resulting from the error of the negative acknowledgement (NACK) changing to the acknowledgement (ACK) in the control channel. In the stall situation, the receiver waits for a packet that will be no longer be sent by the transmitter and stops delivering the medium access control (MAC) layer packets to the upper layer. The stall issue seriously degrades the quality of service for the high-speed mobile terminal owing to the high probability of NACK-to-ACK errors. In this paper, we present an analytical approach to compare three stall avoidance schemes: the timer-based, the window-based, and the indicator-based schemes. To this end, we first propose a new performance metric-gap processing time, which is defined as the duration for a non recoverable gap appearing in the MAC layer reordering buffer until it is recognized. Second, we derive the probability mass functions and the closed-form expressions for the average gap processing time of these three stall avoidance schemes. It will be shown that our analytical results match the simulations well. Further, by analysis, we demonstrate that the indicator-based stall avoidance scheme outperforms the timer-based and the window-based schemes. The developed analytical approaches can help determine a proper number of processes for the parallel SAW HARQ mechanisms. We also show that the analytical formulas can be used to design the number of acceptable fully loaded users for an admission control policy subject to the gap processing time constraint. In the future, our analysis can facilitate the MAC/radio link control (RLC) cross-layer design because the gap processing time in the MAC layer is closely related to the RLC timeout mechanism and the- window size in the RLC retransmission mechanism
机译:并行多通道停止等待(SAW)混合自动重发请求(HARQ)机制是宽带码分多址系统中高速下行链路分组访问的关键技术之一。然而,这种并行HARQ机制可能会遇到严重的停顿问题,这是由控制信道中的否定确认(NACK)更改为确认(ACK)的错误引起的。在停顿情况下,接收器等待将不再由发送器发送的数据包,并停止将媒体访问控制(MAC)层数据包传递到上层。由于NACK到ACK错误的可能性很高,因此停顿问题严重降低了高速移动终端的服务质量。在本文中,我们提出了一种分析方法,用于比较三种失速避免方案:基于计时器的方案,基于窗口的方案和基于指标的方案。为此,我们首先提出一个新的性能度量间隙处理时间,该时间定义为在MAC层重排序缓冲区中出现直到被识别的不可恢复间隙的持续时间。其次,我们推导了这三种失速避免方案的平均间隙处理时间的概率质量函数和封闭形式。结果表明,我们的分析结果与模拟结果非常吻合。此外,通过分析,我们证明了基于指标的失速避免方案的性能优于基于计时器的方案和基于窗口的方案。开发的分析方法可以帮助确定并行SAW HARQ机制的适当数量的进程。我们还表明,该解析公式可用于设计受制于间隙处理时间约束的接纳控制策略的可接受的满负荷用户数。将来,我们的分析将有助于MAC /无线电链路控制(RLC)跨层设计,因为MAC层中的间隙处理时间与RLC超时机制和RLC重传机制中的窗口大小密切相关

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