Delay-tolerant ICN and its application to LoRa

Peter Kietzmann, José Álamos, D. Kutscher, T. Schmidt, Matthias Wählisch
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引用次数: 2

Abstract

Connecting long-range wireless networks to the Internet imposes challenges due to vastly longer round-trip-times (RTTs). In this paper, we present an ICN protocol framework that enables robust and efficient delay-tolerant communication to edge networks. Our approach provides ICN-idiomatic communication between networks with vastly different RTTs. We applied this framework to LoRa, enabling end-to-end consumer-to-LoRa-producer interaction over an ICN-Internet and asynchronous data production in the LoRa edge. Instead of using LoRaWAN, we implemented an IEEE 802.15.4e DSME MAC layer on top of the LoRa PHY and ICN protocol mechanisms in RIOT OS. Executed on off-the-shelf IoT hardware, we provide a comparative evaluation for basic NDN-style ICN [60], RICE [31]-like pulling, and reflexive forwarding [46]. This is the first practical evaluation of ICN over LoRa using a reliable MAC. Our results show that periodic polling in NDN works inefficiently when facing long and differing RTTs. RICE reduces polling overhead and exploits gateway knowledge, without violating ICN principles. Reflexive forwarding reflects sporadic data generation naturally. Combined with a local data push, it operates efficiently and enables lifetimes of ≥1 year for battery powered LoRa-ICN nodes.
时延容忍ICN及其在LoRa中的应用
由于往返时间(rtt)大大延长,将远程无线网络连接到Internet带来了挑战。在本文中,我们提出了一个ICN协议框架,使边缘网络具有鲁棒性和高效的容错通信。我们的方法在具有不同rtt的网络之间提供了icn惯用的通信。我们将此框架应用于LoRa,通过ICN-Internet实现端到端的消费者到LoRa生产者的交互,并在LoRa边缘实现异步数据生产。我们没有使用LoRaWAN,而是在RIOT OS的LoRa PHY和ICN协议机制之上实现了IEEE 802.15.4e DSME MAC层。在现成的物联网硬件上执行,我们对基本ndn风格的ICN[60]、类RICE[31]的拉动和自反转发[46]进行了比较评估。这是使用可靠的MAC对LoRa上的ICN进行的第一次实际评估。我们的结果表明,当面对长且不同的rtt时,NDN中的周期性轮询工作效率很低。RICE在不违反ICN原则的情况下减少了轮询开销并利用了网关知识。自反转发自然反映了零星的数据生成。结合本地数据推送,它高效运行,使电池供电的LoRa-ICN节点的寿命≥1年。
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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