Performance Evaluation of IPv6 Routing Protocol for Low Power and Lossy Networks Based on Objective Functions for Media Technology

Q2 Engineering
M. B. Yassein, Ayah Abu Aqouleh
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引用次数: 0

Abstract

The Internet Engineering Task Force (IETF) has proposed the use of the IPv6 Routing Protocol for the Low-Power and Lossy Networks (RPL). RPL has been seen to be a major routing protocol related to the Internet of Things (IoT) that could be used for wireless networks with lower power consumption and liable to a higher packet loss. The RPL construct-related network topology uses the Objective Functions (OF) for choosing the route from the source to a destination node, which has been based on constraints and metrics. The IETF designed two OFs for the RPL protocol, i.e., Objective Function Zero (OF0) and Minimum Rank with Hysteresis Objective Function (MRHOF). In this study, the researchers have investigated the RPL performance with the help of the OFs in a medium density. This performance has been judged using different network parameters like Packet Delivery Ratio (PDR) and Power Consumption (PC). Furthermore, in this study, the number of nodes has been maintained as 40 and 50. The RX ratio has varied between 20, 60, and 100%, in the grid, and random topologies. The results of the study have also indicated that the OF0 protocol has showed a better performance concerning the power consumption compared to the MRHOF, while both the OFs have showed a similar PDR performance.
基于媒体技术目标函数的低功耗有损网络IPv6路由协议性能评价
互联网工程任务组(IETF)已经提议在低功耗和有损网络(RPL)中使用IPv6路由协议。RPL已被视为与物联网(IoT)相关的主要路由协议,可用于功耗较低且易丢失数据包的无线网络。与RPL结构相关的网络拓扑使用目标函数(OF)来选择从源节点到目的节点的路由,这是基于约束和度量的。IETF为RPL协议设计了两个OFs,即目标函数零(OF0)和带滞后最小秩目标函数(MRHOF)。在这项研究中,研究人员研究了在中密度条件下OFs对RPL性能的影响。这种性能是通过不同的网络参数,如包投递率(PDR)和功耗(PC)来判断的。此外,在本研究中,保持节点数为40和50。在网格和随机拓扑中,RX比率在20%、60%和100%之间变化。研究结果还表明,与MRHOF相比,OF0协议在功耗方面表现出更好的性能,而两种OFs都表现出相似的PDR性能。
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来源期刊
CiteScore
2.90
自引率
0.00%
发文量
17
期刊介绍: The International Journal on Communications Antenna and Propagation (IRECAP) is a peer-reviewed journal that publishes original theoretical and applied papers on all aspects of Communications, Antenna, Propagation and networking technologies.
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