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Enhancing cellular M2M random access with binary countdown contention resolution

机译:提高具有二元倒计时争用分辨率的蜂窝M2M随机访问

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Accommodating Machine-to-Machine applications and their requirements is one of the challenges on the way from LTE towards 5G networks. The envisioned high density of devices, alongside with their sporadic and synchronized transmission patterns, might create signaling storms and overload in the current LTE network. Here, we address the notorious random access (RA) challenge, namely, scalability of the radio link connection establishment protocol in LTE networks. We revisit the binary countdown technique for contention resolution (BCCR), and apply it to the LTE RA procedure. We analytically investigate the performance gains and trade-offs of applying BCCR in LTE. We further simulatively compare BCCR RA with the state-of-the-art RA techniques, and demonstrate its advantages in terms of delay and throughput.
机译:适应机器到机器应用及其要求是LTE对5G网络的挑战之一。随着它们的零星和同步传输模式,设想的高密度可以在当前LTE网络中产生信令风暴和过载。在这里,我们解决了臭名昭着的随机访问(RA)挑战,即LTE网络中无线电链路连接建立协议的可扩展性。我们重新审视二进制倒计时技术进行争用解析(BCCR),并将其应用于LTE RA程序。我们分析了在LTE应用BCCR的性能收益和权衡。我们进一步模拟了BCCR RA与最先进的RA技术,并在延迟和吞吐量方面展示其优势。

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