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Delay-aware massive random access: Adaptive framing and successive decoding

机译:延迟感知的大规模随机访问:自适应成帧和连续解码

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In Internet of Things, wireless access networks need to support a large number of user equipments (UEs) in real time, where UEs frequently arrive and leave and plenty of packet collisions occur. In this paper, we propose a protocol termed adaptive framing with successive decoding (AFSD), that not only supports vast connectivity but also involves little signalling overhead. By using AFSD, the frame length can be adaptively adjusted based on the present UE number to deal with the fluidity of UEs, and successive decoding is adopted to recover signal from the mixed received signal to alleviate the packet collision. We explicitly analyze the average delay of our protocol. Numerical results verify the accuracy of our analysis, as well as the effectiveness of the proposed protocol on handling massive access.
机译:在物联网中,无线接入网络需要实时支持大量的用户设备(UE),其中UE频繁到达和离开,并且发生大量的分组冲突。在本文中,我们提出了一种称为具有连续解码的自适应成帧(AFSD)的协议,该协议不仅支持广泛的连接性,而且几乎没有信令开销。通过使用AFSD,可以基于当前UE数量自适应地调整帧长,以应对UE的流动性,并采用连续解码从混合接收信号中恢复信号,以减轻分组冲突。我们明确分析了协议的平均延迟。数值结果验证了我们分析的准确性,以及所提出协议在处理大规模访问方面的有效性。

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