Throughput of two-hop wireless channels with queueing constraints and finite blocklength codes

Yi Li, M. C. Gursoy, Senem Velipasalar
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引用次数: 12

Abstract

In this paper, throughput of two-hop wireless relay channels is studied in the finite blocklength regime. Half-duplex relay operation, in which the source node initially sends information to the intermediate relay node and the relay node subsequently forwards the messages to the destination, is considered. It is assumed that all messages are stored in buffers before being sent through the channel, and both the source node and the relay operate under statistical queueing constraints. After characterizing the transmission rates in the finite blocklength regime, the system throughput is formulated via queueing analysis. Subsequently, several properties of the throughput function in terms of system parameters are identified, and an efficient algorithm is proposed to maximize the throughput. Interplay between throughput, queueing constraints, relay location, time allocation, and code blocklength is investigated through numerical results.
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具有排队约束和有限块长码的两跳无线信道的吞吐量
本文研究了有限块长度条件下两跳无线中继信道的吞吐量问题。考虑源节点首先向中间中继节点发送信息,然后由中间中继节点转发到目的节点的半双工中继操作。假设所有消息在通过通道发送之前都存储在缓冲区中,并且源节点和中继都在统计队列约束下操作。在描述了有限块长体制下的传输速率后,通过排队分析得到了系统吞吐量。随后,识别了吞吐量函数在系统参数方面的几个性质,并提出了一种有效的吞吐量最大化算法。通过数值结果研究了吞吐量、排队约束、中继位置、时间分配和码块长度之间的相互作用。
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