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Delay Models of Single-Source Single-Relay Cooperative ARQ Protocols in Slotted Radio Networks With Poisson Frame Arrivals

机译:具有泊松帧到达的缝隙无线网络中单源单中继协作ARQ协议的延迟模型

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In conventional (noncooperative) automatic repeat request (ARQ) protocols for radio networks, the corrupted data frames that cannot be correctly decoded at the destination are retransmitted by the source. In cooperative ARQ protocols, data frame retransmissions may be performed by a neighboring node (the relay) that has successfully overheard the source''s frame transmission. One advantage of the latter group of ARQ protocols is the spatial diversity provided by the relay. The first delay model for cooperative ARQ protocols is derived in this paper. The model is analytically derived for a simple set of retransmission rules that make use of both uncoded and coded cooperative communications in slotted radio networks. The model estimates the delay experienced by Poisson arriving frames, whose retransmissions (when required) are performed also by a single relay. Saturation throughput, data frame latency, and buffer occupancy at both the source and relay are quantified and compared against two noncooperative ARQ protocols.
机译:在用于无线电网络的常规(非合作)自动重复请求(ARQ)协议中,源无法重新传输无法在目标位置正确解码的损坏数据帧。在协作ARQ协议中,数据帧重传可以由成功侦听源帧传输的相邻节点(中继)执行。后一组ARQ协议的一个优点是中继器提供的空间分集。本文推导了用于协作ARQ协议的第一个延迟模型。该模型是针对一组简单的重发规则进行分析得出的,该规则使用了时隙无线网络中的未编码和已编码协作通信。该模型估计泊松到达帧经历的延迟,泊松到达帧的重传(需要时)也由单个中继执行。对源和中继处的饱和吞吐量,数据帧等待时间和缓冲区占用情况进行量化,并与两个非合作的ARQ协议进行比较。

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