Concurrent Transmissions for Communication Protocols in the Internet of Things

Martina Brachmann, O. Landsiedel, S. Santini
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引用次数: 20

Abstract

Standard Internet communication protocols are key enablers for the Internet of Things (IoT). Recent technological advances have made it possible to run such protocols on resource-constrained devices. Yet these devices often use energy-efficient, low-level communication technologies, like IEEE 802.15.4, which suffer from low-reliability and high latency. These drawbacks can be significantly reduced if communication occurs using concurrent transmissions - a novel communication paradigm for resource-constrained devices. In this paper, we show that Internet protocols like TCP/UDP and CoAP can run efficiently on top of a routing substrate based on concurrent transmissions. We call this substrate LaneFlood and demonstrate its effectiveness through extensive experiments on Flocklab, a publicly available testbed. Our results show that LaneFlood improves upon CXFS - a representative competitor - in terms of both duty cycle and reliability. Furthermore, LaneFlood can transport IoT traffic with an end-to-end latency of less than 300 ms over several hops.
物联网通信协议的并发传输
标准的互联网通信协议是物联网(IoT)的关键推动者。最近的技术进步使得在资源受限的设备上运行这样的协议成为可能。然而,这些设备通常使用节能、低级的通信技术,如IEEE 802.15.4,存在低可靠性和高延迟的问题。如果使用并发传输(一种用于资源受限设备的新型通信范例)进行通信,则可以显著减少这些缺点。在本文中,我们展示了像TCP/UDP和CoAP这样的互联网协议可以在基于并发传输的路由基板上有效地运行。我们称这种基板为lanefood,并通过在Flocklab(一个公开可用的测试平台)上进行大量实验来证明其有效性。我们的研究结果表明,lanefood在占空比和可靠性方面都优于CXFS(一个代表性的竞争对手)。此外,lanefflood可以在几跳之间以小于300毫秒的端到端延迟传输物联网流量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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