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Throughput Delay Tradeoff for Wireless Multicast Using Hybrid-ARQ Protocols

机译:使用混合ARQ协议进行无线组播的吞吐量延迟权衡

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摘要

In this paper, we present a hybrid automatic repeat request (ARQ) scheme for wireless multicast with incremental redundancy channel coding and packet retransmission. With this scheme, we can reliably deliver the same copy of information to different users with mild delay. In addition, the design of the feedback channel for this scheme can be greatly simplified as no effort must be expended to combat cross user interference. We assume that there is always a packet for the transmitter to send whenever the channel is available. The transmitter is assumed to have a buffer of infinite length so that there is no packet-dropping. Three specific schemes are studied, including generalized slotted ALOHA (GSA), repetition time diversity (RTD), and general incremental redundancy (IR). The scaling laws of the average delay and average throughput with respect of the number of users are derived. In addition, we also derive a condition to obtain a linear scaling for both the throughput and the delay with respect to the number of users. Since every user can achieve no more than the ergodic capacity, we actually achieve the optimal scaling law in this case. Simulation results confirm our findings.
机译:在本文中,我们提出了一种无线自动混合的混合自动重传请求(ARQ)方案,具有增量冗余信道编码和数据包重传功能。通过这种方案,我们可以可靠地将信息的相同副本缓慢地传递给不同的用户。另外,该方案的反馈信道的设计可以大大简化,因为不必花费任何精力来对抗跨用户干扰。我们假设只要有可用信道,发送器总是有一个要发送的数据包。假定发送器具有无限长的缓冲区,以便不存在丢包现象。研究了三种特定方案,包括广义时隙ALOHA(GSA),重复时间分集(RTD)和通用增量冗余(IR)。得出关于用户数量的平均延迟和平均吞吐量的缩放定律。另外,我们还推导了一个条件,以获得吞吐量和相对于用户数量的延迟的线性缩放。由于每个用户最多只能获得遍历能力,因此在这种情况下,我们实际上实现了最佳的缩放定律。仿真结果证实了我们的发现。

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