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Dynamic RPL for multi-hop routing in IoT applications

机译:IOT应用中的多跳路由动态RPL

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The Routing Protocol for Low Power and Lossy Networks (RPL) has become the standard routing protocol for the Internet of Things (IoT). This paper investigates the use of RPL in dynamic networks and presents an enhanced RPL for different applications with dynamic mobility and diverse network requirements. This implementation of RPL is designed with a new dynamic Objective-Function (D-OF) to improve the Packet Delivery Ratio (PDR), end-to-end delay and energy consumption while maintaining low packet overhead and loop-avoidance. We propose a controlled reverse-trickle timer based on received signal strength identification (RSSI) readings to maintain high responsiveness with minimum overhead and consult the objective function when a movement or an inconsistency is detected to help nodes make an informed decision. Simulations are done using Cooja with random waypoint mobility scenario for healthcare applications considering multi-hop routing. The results show that the proposed dynamic RPL (D-RPL) adapts to the nodes mobility and has a higher PDR, slightly lower end-to-end delay and reasonable energy consumption compared to related existing protocols.
机译:低功耗和有损网络(RPL)的路由协议已成为物联网(IOT)的标准路由协议。本文调查了RPL在动态网络中的使用,并提高了具有动态移动性和各种网络要求的不同应用的增强型RPL。这种RPL的实现是用新的动态目标 - 功能(D-of)设计,以改善分组传递比(PDR),端到端延迟和能量消耗,同时保持低分组开销和环路避免。我们提出了一种基于接收的信号强度识别(RSSI)读数的受控的反向涓流定时器,以保持高响应性,以最小开销,并在检测到移动或不一致时咨询目标函数,以帮助节点做出明智的决定。考虑多跳路由,使用Cooja使用Coooja进行了随机航路行动场景进行的。结果表明,与相关现有协议相比,所提出的动态RPL(D-RPL)适应节点移动性,并且具有更高的PDR,略低于端到端延迟和合理的能量消耗。

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