Efficient device-to-device association and data aggregation in industrial IoT systems

Shilpa Rao, R. Shorey
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引用次数: 18

Abstract

Internet of things (IoT) encompass a plethora of connected smart devices and support diverse applications. IoT is likely to be an integral feature of next generation cellular systems. In the manufacturing and supply chain industry, the Industrial IoT (IIoT), which consists of sensors, actuators and machinery, is deployed for monitoring, data collection and analysis, asset management, maintenance planning, and plant control and optimization. In this work, we consider the uplink transmission of an IIoT system, in which the IoT devices transmit their data to the Base Station (BS) through User Equipments (UEs). The BS, in turn, transmits the data to the cloud for further processing. The UEs receive the data from the IoT devices, aggregate with their uplink data, and transmit the aggregated data to the BS. Our investigation shows that the IoT devices require less transmit energy when UEs are used as relays. We study the system when the IoT devices associate themselves with the UEs through the fixed, random, and greedy schemes, and evaluate the end-to-end outage probability at the devices for each of the three schemes. We show that the greedy association scheme has the minimum outage probability at the IoT device. We study the effect of the number of IoT devices, the number of UEs, the data arrival rates at the IoT devices, and the uplink data evolution process of UEs on the outage probability, and draw meaningful insights into IIoT system design.
工业物联网系统中高效的设备间关联和数据聚合
物联网(IoT)包含大量连接的智能设备,并支持各种应用。物联网很可能成为下一代蜂窝系统的一个组成部分。在制造业和供应链行业,工业物联网(IIoT)由传感器、执行器和机械组成,用于监控、数据收集和分析、资产管理、维护计划以及工厂控制和优化。在这项工作中,我们考虑了IIoT系统的上行传输,其中IoT设备通过用户设备(ue)将其数据传输到基站(BS)。然后,BS将数据传输到云端进行进一步处理。终端接收来自物联网设备的数据,并将其与上行链路数据进行汇总,然后将汇总后的数据发送给BS。我们的调查表明,当ue被用作继电器时,物联网设备需要更少的传输能量。我们研究了物联网设备通过固定、随机和贪婪三种方案与终端关联时的系统,并评估了三种方案下设备端到端中断的概率。我们证明了贪婪关联方案在物联网设备上具有最小的中断概率。我们研究了物联网设备数量、终端数量、数据到达物联网设备的速率以及终端的上行数据演化过程对中断概率的影响,并为工业物联网系统设计提供有意义的见解。
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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