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On supporting IoT data aggregation through programmable data planes

机译:通过可编程数据平面支持IOT数据聚合

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摘要

IoT devices generate large continuous data streams, which causes congestion that compromises the scalability of IoT systems. To face this problem, techniques for data aggregation have been proposed to reduce recurring packet headers, through assembly of packet data coming from different sources. Due to the energy constraints and limitation of computational resources of devices, most proposals adjust data aggregation according to their features following multilayered-based approaches or coupling the solution to a given network protocol, but overlooking the properties of the communication link. In this work, we introduce the Internet of Things Protocol (IoTP). An L2 communication protocol for IoT programmable data planes that supports the implementation of data aggregation algorithms inside hardware switches, at the network level. Through these features, IoTP provides support for the design of efficient and adaptable aggregation schemes that can function according to network status and based on the different communication technologies used by IoT devices. We implemented IoTP using the P4 language and conducted emulation-based experiments through the Mininet environment. Our findings show that IoTP accomplishes a 78% improvement in network efficiency, as well as allowing control over the average delay generated by data aggregation techniques. Besides that, it was able to reduce the number of packets sent over the network, while also reducing the consumption of network devices computational resources.
机译:IOT设备生成大的连续数据流,这会导致损害物联网系统可扩展性的拥塞。为了面对这个问题,已经提出了通过组装来自来自不同来源的分组数据的组装来减少重复分组标题的数据聚合技术。由于设备的计算资源的能量约束和限制,大多数提案根据基于多层的方法或将解决方案耦合到给定的网络协议,但忽略了通信链路的属性,因此根据其特征根据其特征调整数据聚合。在这项工作中,我们介绍了物联网协议(IOTP)。用于IOT可编程数据平面的L2通信协议,其支持在网络级别地支持硬件交换机内部的数据聚合算法。通过这些功能,IOTP为能够根据网络状态和IOT设备使用的不同通信技术的功能提供了可以使用的高效和适应性聚合方案的支持。我们使用P4语言实现了IOTP,并通过Minitet环境进行了基于仿真的实验。我们的研究结果表明,IOTP在网络效率上完成了78%的提高,以及控制数据聚合技术产生的平均延迟。除此之外,它还能够减少通过网络发送的数据包数,同时还降低了网络设备的消耗计算资源。

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