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Efficient LTE access with collision resolution for massive M2M communications

机译:具有冲突解决方案的高效LTE接入,可进行大规模M2M通信

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LTE random access procedure performs satisfactorily in case of asynchronous, uncorrelated traffic arrivals. However, when the arrivals are correlated and arrive synchronously, the performance of the random access channel (RACH) is drastically reduced, causing a large number of devices to experience outage. In this work we propose a LTE RACH scheme tailored for delay-sensitive M2M services with synchronous traffic arrivals. The key idea is, upon detection of a RACH overload, to apply a collision resolution algorithm based on splitting trees. The solution is implemented on top of the existing LTE RACH mechanism, requiring only minor modifications of the protocol operation and not incurring any changes to the physical layer. The results are very promising, outperforming the related solutions by a wide margin. As an illustration, the proposed scheme can resolve 30k devices with an average of 5 preamble transmissions and delay of 1.2 seconds, under a realistic probability of transmissions error both in the downlink and in the uplink.
机译:在异步,不相关的流量到达的情况下,LTE随机接入过程可以令人满意地执行。但是,当到达关联并同步到达时,随机访问信道(RACH)的性能将大大降低,从而导致大量设备出现中断。在这项工作中,我们提出了针对具有同步流量到达的对延迟敏感的M2M服务而量身定制的LTE RACH方案。关键思想是,在检测到RACH过载时,应用基于拆分树的冲突解决算法。该解决方案是在现有LTE RACH机制的基础上实现的,仅需对协议操作进行较小的修改即可,并且不会对物理层造成任何变化。结果是非常有希望的,大大优于相关解决方案。作为说明,在下行链路和上行链路中都存在传输错误的实际概率的情况下,提出的方案可以解析30k个设备,平均传输5次前同步码,延迟为1.2秒。

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