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Performance Analysis of Internet of Things Routing Protocol for Low Power and Lossy Networks (RPL): Energy, Overhead and Packet Delivery

机译:低功耗和损耗网络路由方案互联网互联网性能分析(RPL):能源,开销和数据包交付

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In line with the rapid development of the Internet of Things (IoT) network, the challenges faced are ensuring the network performance is capable to support the communication of these IoT devices. As a result, the routing protocols can provide fast route discovery and network maintenance by considering the IoT network's resource constraints. This paper's main contributions are to identify compatible IoT routing protocol using qualitative method and factor that affect network performance. Routing Protocol for Low Power and Lossy Networks (RPL) is a proactive distance- vector routing protocol designed as a proposed standard to meet the requirements of the Low Power and Lossy Networks (LLN). In this project, four influential factors on the performance of RPL in Contiki OS are examined using the Cooja simulator and then RPL performance is assessed in terms of Packet Delivery Ratio (PDR), Energy consumption and Overhead control message for the network. The project provides an insight into the implications of traffic patterns, transmission ranges, network size and node mobility for different scenarios. The results of the simulation show that the PDR and overhead ratio increases proportional to transmission distances increases but decreases while radio interference is increased. From the mobility aspect, PDR decreases by an average of 19.5% when the mobility nodes expand. On the other hand, energy consumption increases by an average of 63.7% and control message size increased up to 213% when the network consists of 40 percent of mobility nodes.
机译:与物联网(IOT)网络的互联网的迅猛发展的同时,面临的挑战是确保网络性能能够支持这些物联网设备的通信。其结果是,路由协议可通过考虑物联网网络的资源约束提供快速路由发现和网络维护。本文的主要贡献是采用定性方法和影响网络性能的因素,以确定兼容物联网的路由协议。路由协议低功率有损网络(RPL)是主动距离 - 向量路由协议设计为建议的标准,以满足低功耗和有损网络(LLN)的要求。在这个项目中,使用Cooja模拟器进行检查的RPL的半自助旅游旅行社在OS性能4个影响因素,然后RPL性能在包投递率(PDR),能源消耗和开销控制消息在网络方面进行评估。该项目提供的洞察的流量模式,传输范围,对于不同的场景的网络规模和节点移动性的影响。的仿真结果表明,在PDR和开销比率成比例地增加传输距离的增加而减小,而无线电干扰增加。从移动性方面,PDR平均的19.5%时的流动性节点扩大而减小。在另一方面,由平均63.7%和控制消息大小的能量消耗增加提高到213%时,网络包括移动性节点的40%。

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