Priority RPL for IOT Based Smart Manufacturing Industries

Krishna Priya M, A. G
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Abstract

A routing protocol used in heterogeneous transport networks for low-power, lossy networks. This is a routing protocol for wireless networks. This protocol follows the same specifications as Zigbee, 6 lopan is IEEE 802.15. 4 Enables both many-to-one and one-to-one communication. To address the need for enhancing in this study proposes a novel methodology called RPL-PG (Routing Protocol for Low-Power and Lossy Networks Priority Generation). Initially sensors like Temperature, Humidity, Vibration, Proximity, Gas and Current Monitoring Sensors are used for smart manufacturing. Consequently, Destination Oriented Directed Acyclic Graph (DODAG) is used for RPL configuration. Based on selected RPL configuration the priority is generated using assign priority count and priority-based queuing. Finally, Fuzzy rules are used to select the RPL path and then update the DODAG finally reached the destination. The study involves setting up a simulated environment using appropriate tools, such as MATLAB. Experimental findings evaluate and compares performance measures, such as Energy Consumption, Network Life Time, Packet Loss Ratio, Packet Delivery Ratio (PDR), E2E Delay, and Network Throughput. The Energy Consumption of the proposed RPL-PG method achieves 43.6 % lower than 38 % and 35.8 % in terms of OMC-RPL and RMA-RP respectively.
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基于物联网的智能制造行业的优先 RPL
异构传输网络中用于低功耗、有损网络的路由协议。这是一种用于无线网络的路由协议。该协议遵循与 Zigbee 相同的规范,6 lopan 是 IEEE 802.15。为满足增强网络性能的需要,本研究提出了一种名为 RPL-PG (低功耗和有损网络优先生成路由协议)的新方法。最初,温度、湿度、振动、接近度、气体和电流监测传感器被用于智能制造。因此,面向目的地的有向无环图(DODAG)被用于 RPL 配置。根据所选的 RPL 配置,使用分配优先级计数和基于优先级的队列生成优先级。最后,使用模糊规则选择 RPL 路径,然后更新 DODAG,最终到达目的地。研究涉及使用适当的工具(如 MATLAB)建立模拟环境。实验结果评估并比较了各项性能指标,如能源消耗、网络寿命、数据包丢失率、数据包交付率 (PDR)、E2E 延迟和网络吞吐量。就 OMC-RPL 和 RMA-RP 而言,拟议 RPL-PG 方法的能耗分别比 OMC-RPL 和 RMA-RP 的 38% 和 35.8% 低 43.6%。
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