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Two paradigms in cellular Internet-of-Things access for energy-harvesting machine-to-machine devices: push-based versus pull-based

机译:能量收集机器对机器设备的蜂窝物联网访问的两种范例:基于推式和基于拉式

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Equipping communication apparatuses with energy-harvesting technology could achieve system sustainability without human intervention. Though the harvested energy of existing techniques is limited and intermittent, it is sufficient to power devices in low-power-consuming machine-to-machine (M2M) communications. However, due to the large number of devices with time-varying energy arrival, the medium access control protocol should be redesigned. This study focuses on studying energy-harvesting M2M uplink cellular communications from the protocol design perspective, considering the properties of M2M and energy harvesting. The authors first explore the performance of two fundamental schemes: push-based and pull-based random access channel (RACH) procedures in terms of preamble collision probability, throughput, energy efficiency, and packet delay. In the push-based scheme, devices are self-energy-aware and there is no schedule signalling cost. However, the performance degrades as the device number increases. The pull-based scheme is an alternative to have stable throughput and energy efficiency, with sacrifice of the extra scheduling cost and increasing latency. As a result, a hybrid scheme is proposed to adaptively select the preamble transmission schemes based on the estimated device number. The hybrid scheme guarantees adequate packet delay under different traffic loads and varying energy levels.
机译:为通信设备配备能量收集技术可以实现系统的可持续性,而无需人工干预。尽管现有技术所收集的能量有限且断断续续,但足以为低功耗机器对机器(M2M)通信中的设备供电。但是,由于大量具有随时间变化的能量到达的设备,因此应该重新设计媒体访问控制协议。这项研究着重从协议设计的角度研究能量收集M2M上行链路蜂窝通信,同时考虑M2M的特性和能量收集。作者首先从前导冲突概率,吞吐量,能效和数据包延迟方面探讨了两种基本方案的性能:基于推和基于拉的随机访问信道(RACH)过程。在基于推送的方案中,设备具有自我能源意识,并且没有调度信令成本。但是,性能会随着设备数量的增加而降低。基于拉的方案是具有稳定的吞吐量和能效的替代方案,同时牺牲了额外的调度成本和增加的延迟。结果,提出了一种混合方案,以基于估计的设备数量来自适应地选择前同步码传输方案。混合方案可确保在不同的流量负载和变化的能量水平下有足够的数据包延迟。

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