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Centralized Scheduling Strategies for Cooperative HARQ Retransmissions in Multi-Source Multi-Relay Wireless Networks

机译:多源多中继无线网络中的共同调度策略,用于多源多中继无线网络中的合作HARQ重传

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In this paper, we investigate centralized scheduling strategies for cooperative incremental redundancy retransmissions in the slow-fading half-duplex multiple access multiple relay channel. Time Division Multiple Access is assumed for the sources and the relays. Sources transmit successively in time slots for the first phase. The second phase consists of a limited number of time slots for retransmissions. In each time slot, the destination schedules a node (being a relay or a source) to retransmit, conditional on the knowledge of the correctly decoded source sets of each node (which is itself for a source). A scheduled relay retransmission uses Joint Network and Channel Coding on its correctly decoded source messages (cooperative retransmission). Several node selection strategies are proposed based on the maximization of the long-term aggregate throughput under a given constraint of fairness. Monte-Carlo simulations show that these strategies outperform the state of the art one based on the minimization of the probability of the common outage event after each time-slot. Moreover, the long-term aggregate throughput reached with these strategies is close to the upper-bound, calculated by the exhaustive search approach. The same conclusion remains valid for both symmetric and asymmetric source rate scenarios.
机译:在本文中,我们调查了慢衰老半双工多次访问多次继电器信道中的协同增量冗余重传的集中调度策略。定时多次访问来源和继电器。源在第一阶段连续传输时隙。第二阶段包括有限数量的用于重传的时隙。在每个时隙中,目的地将节点(作为中继或源)调度重传,条件是每个节点的正确解码的源集的知识(这本身用于源)。预定的中继重传在其正确解码的源消息(协同重传)上使用联合网络和信道编码。基于在给定的公平性的限制下的长期聚集吞吐量的最大化提出了几种节点选择策略。 Monte-Carlo模拟表明,这些策略基于在每个时隙之后的常见停电事件的概率的最小化的基础上占据了最新状态。此外,随着这些策略达到的长期聚集产量靠近通过详尽的搜索方法计算的上限。相同的结论对于对称和不对称的源率方案仍然有效。

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