用于毛细管M2M网络的标准化节能和互联网通信堆栈

Nicola Accettura, M. Palattella, M. Dohler, L. Grieco, G. Boggia
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引用次数: 34

摘要

机器对机器(M2M)通信是指设备在没有人为干预的情况下相互通信的能力。作为新兴的物联网(IoT)中最具工业意义的分支,它对可靠性、低功耗和经常延迟有着非常严格的要求。由于目前蜂窝M2M仍然相对耗电,我们在本文中集中讨论了成本效益更高的毛细管M2M。然而,毛细管M2M系统存在可靠性差和无界延迟的问题。为此,我们主张采用由最新的IEEE和IETF协议组成的通信栈,以满足严格的要求。值得注意的是,新兴的IEEE 802.15.4e MAC与合适的IETF 6LoWPAN适应和IETF ROLL路由协议相结合,可以在不损害可靠性和延迟的情况下实现积极的占空比。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Standardized power-efficient & internet-enabled communication stack for capillary M2M networks
Machine-to-machine (M2M) communications refer to the ability of devices to communicate with each other without human intervention. Being arguably the most industrial branch of the emerging Internet of Things (IoT), it has some very stringent requirements on reliability, low-power and often delay. With cellular M2M today still being relatively power hungry, we concentrate in this paper on capillary M2M which is also more cost-efficient. Capillary M2M systems however are known to suffer from poor reliability and unbounded delay. To this end, we argue for a communication stack composed of latest IEEE and IETF protocols, which allows meeting the stringent requirements. Notably, the emerging IEEE 802.15.4e MAC coupled with a suitable IETF 6LoWPAN adaption and IETF ROLL routing protocol is shown to allow for aggressive duty cycling without jeopardizing reliability and delays.
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