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Broadcast Coded Slotted ALOHA: A Finite Frame Length Analysis

机译:广播编码时隙ALOHA:有限帧长分析

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摘要

We propose an uncoordinated medium access control (MAC) protocol, called all-to-all broadcast coded slotted ALOHA (B-CSA) for reliable all-to-all broadcast with strict latency constraints. In B-CSA, each user acts as both transmitter and receiver in a half-duplex mode. The half-duplex mode gives rise to a double unequal error protection (DUEP) phenomenon: the more a user repeats its packet, the higher the probability that this packet is decoded by other users, but the lower the probability for this user to decode packets from others. We analyze the performance of B-CSA over the packet erasure channel for a finite frame length. In particular, we provide a general analysis of stopping sets for B-CSA and derive an analytical approximation of the performance in the error floor (EF) region, which captures the DUEP feature of B-CSA. Simulation results reveal that the proposed approximation predicts very well the performance of B-CSA in the EF region. Finally, we consider the application of B-CSA to vehicular communications and compare its performance with that of carrier sense multiple access (CSMA), the current MAC protocol in vehicular networks. The results show that B-CSA is able to support a much larger number of users than CSMA with the same reliability.
机译:我们提出了一种不协调的媒体访问控制(MAC)协议,称为所有广播编码时隙ALOHA(B-CSA),用于在严格的延迟约束下进行可靠的所有广播。在B-CSA中,每个用户在半双工模式下既充当发送器又充当接收器。半双工模式引起双重不平等错误保护(DUEP)现象:用户重复发送其数据包的次数越多,其他用户对该数据包进行解码的可能性就越高,但是该用户对数据包进行解码的可能性就越低从别人那里。我们分析了在有限帧长度的数据包擦除信道上B-CSA的性能。特别是,我们提供了针对B-CSA的停止集的一般分析,并得出了误差本底(EF)区域中性能的分析近似值,它捕获了B-CSA的DUEP特征。仿真结果表明,所提出的近似值很好地预测了EF区B-CSA的性能。最后,我们考虑了B-CSA在车辆通信中的应用,并将其性能与车载网络中当前的MAC协议载波侦听多路访问(CSMA)的性能进行比较。结果表明,与CSMA相比,B-CSA能够以相同的可靠性支持更多的用户。

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